четверг, 4 октября 2012 г.

CP Dec Drops


Generic Name: chlorpheniramine and phenylephrine (KLOR fen IR a meen and FEN il EFF rin)

Brand Names: Actifed Cold & Allergy, Allan Tannate Pediatric, Allerest PE, AlleRx, BP Allergy JR, C Phen, Cardec, Ceron, Chlor-Mes Jr, ChlorTan D, Cold & Allergy Relief, CP Dec, Dallergy Drops, Dallergy-JR, Dec-Chlorphen, Ed A-Hist, Ed ChlorPed D, Histadec, Nasohist Pediatric, NoHist, Ny-Tannic, PD-Hist D, PD-Hist D Drops, PediaTan D, Phenchlor Tannate Pediatric, R-Tanna, Relera, Rinate Pediatric, Rondec, Rondex, Rynatan, Rynatan Pediatric, Sildec-PE, Sinus & Allergy Maximum Strength, Sinus & Allergy PE, Sonahist, Sudafed PE Sinus & Allergy, Tanahist-D, Triaminic Cold & Allergy


What is CP Dec Drops (chlorpheniramine and phenylephrine)?

Chlorpheniramine is an antihistamine that reduces the natural chemical histamine in the body. Histamine can produce symptoms of sneezing, itching, watery eyes, and runny nose.


Phenylephrine is a decongestant that shrinks blood vessels in the nasal passages. Dilated blood vessels can cause nasal congestion (stuffy nose).


The combination of chlorpheniramine and phenylephrine is used to treat symptoms of the common cold or seasonal allergies, including sneezing, runny or stuffy nose, and itchy, watery eyes.


Chlorpheniramine and phenylephrine may also be used for purposes not listed in this medication guide.


What is the most important information I should know about CP Dec Drops (chlorpheniramine and phenylephrine)?


There are many brands and forms of this medication available and not all brands are listed on this leaflet.


Do not use chlorpheniramine and phenylephrine if you have used an MAO inhibitor such as furazolidone (Furoxone), isocarboxazid (Marplan), phenelzine (Nardil), rasagiline (Azilect), selegiline (Eldepryl, Emsam, Zelapar), or tranylcypromine (Parnate) in the last 14 days. A dangerous drug interaction could occur, leading to serious side effects. You should not use this medication if you are allergic to chlorpheniramine or phenylephrine, or if you have severe high blood pressure or coronary artery disease, narrow-angle glaucoma, a stomach ulcer, or if you are unable to urinate.

Do not use this medication during an asthma attack.


This medication may impair your thinking or reactions. Be careful if you drive or do anything that requires you to be alert. Drinking alcohol can increase certain side effects of chlorpheniramine and phenylephrine. Older adults may be more likely to have side effects from this medicine. Do not give this medication to a child younger than 4 years old. Always ask a doctor before giving a cough or cold medicine to a child. Death can occur from the misuse of cough and cold medicines in very young children.

Talk with your doctor if your symptoms do not improve after 7 days of treatment, or if you have a fever with a headache, cough, or skin rash.


What should I discuss with my healthcare provider before taking CP Dec Drops (chlorpheniramine and phenylephrine)?


Do not use chlorpheniramine and phenylephrine if you have used an MAO inhibitor such as furazolidone (Furoxone), isocarboxazid (Marplan), phenelzine (Nardil), rasagiline (Azilect), selegiline (Eldepryl, Emsam, Zelapar), or tranylcypromine (Parnate) in the last 14 days. A dangerous drug interaction could occur, leading to serious side effects. You should not use this medication if you are allergic to chlorpheniramine or phenylephrine, or if you have:

  • severe or uncontrolled high blood pressure;




  • severe coronary artery disease;




  • narrow angle glaucoma;




  • a stomach ulcer;




  • if you are unable to urinate; or




  • if you are having an asthma attack.



Ask a doctor or pharmacist if it is safe for you to take this medication if you have:


  • kidney disease;

  • liver disease;


  • diabetes;




  • glaucoma;




  • circulation problems;




  • heart disease or high blood pressure;




  • overactive thyroid;




  • a seizure disorder such as epilepsy;




  • asthma, emphysema or chronic bronchitis; or




  • urination problems or an enlarged prostate.




It is not known whether chlorpheniramine and phenylephrine is harmful to an unborn baby. Do not take this medication with a doctor's advice if you are pregnant. It is not known whether chlorpheniramine and phenylephrine passes into breast milk or if it could harm a nursing baby. Do not use this medication without telling your doctor if you are breast-feeding a baby. Older adults may be more likely to have side effects from this medicine.

Artificially sweetened liquid cold medicine may contain phenylalanine. If you have phenylketonuria (PKU), check the medication label to see if the product contains phenylalanine.


How should I take CP Dec Drops (chlorpheniramine and phenylephrine)?


Use exactly as directed on the label, or as prescribed by your doctor. Do not use in larger or smaller amounts or for longer than recommended. Cold medicine is usually taken only for a short time until your symptoms clear up.


Do not give this medication to a child younger than 4 years old. Always ask a doctor before giving a cough or cold medicine to a child. Death can occur from the misuse of cough and cold medicines in very young children. Do not crush, chew, break, or open an extended-release tablet or capsule. Swallow it whole. Breaking or opening the pill may cause too much of the drug to be released at one time.

The chewable tablet must be chewed before swallowing.


Measure liquid medicine with a special dose-measuring spoon or medicine cup, not with a regular table spoon. If you do not have a dose-measuring device, ask your pharmacist for one.


Talk with your doctor if your symptoms do not improve after 7 days of treatment, or if you have a fever with a headache, cough, or skin rash.


This medication can cause unusual results with allergy skin tests. Tell any doctor who treats you that you are taking an antihistamine.


If you need surgery, tell the surgeon ahead of time if you have taken a cold medicine within the past few days.


Store at room temperature away from moisture and heat.

What happens if I miss a dose?


Since cold medicine is taken as needed, you may not be on a dosing schedule. If you are taking the medication regularly, take the missed dose as soon as you remember. Skip the missed dose if it is almost time for your next scheduled dose. Do not take extra medicine to make up the missed dose.


What happens if I overdose?


Seek emergency medical attention or call the Poison Help line at 1-800-222-1222.

Overdose symptoms may include some of the serious side effects listed in this medication guide.


What should I avoid while taking CP Dec Drops (chlorpheniramine and phenylephrine)?


This medication may impair your thinking or reactions. Be careful if you drive or do anything that requires you to be alert. Drinking alcohol can increase certain side effects of chlorpheniramine and phenylephrine. Ask a doctor or pharmacist before using any other cold, allergy, or sleep medicine. Chlorpheniramine and phenylephrine are contained in many combination medicines. Taking certain products together can cause you to get too much of a certain drug. Check the label to see if a medicine contains an antihistamine or decongestant.

Avoid taking this medication if you also take diet pills, caffeine pills, or other stimulants (such as ADHD medications). Taking a stimulant together with a decongestant can increase your risk of unpleasant side effects.


CP Dec Drops (chlorpheniramine and phenylephrine) side effects


Get emergency medical help if you have any of these signs of an allergic reaction: hives; difficulty breathing; swelling of your face, lips, tongue, or throat. Stop using this medication and call your doctor at once if you have a serious side effect such as:

  • fast or pounding heartbeats;




  • confusion, hallucinations, unusual thoughts or behavior;




  • severe dizziness, anxiety, restless feeling, nervousness;




  • urinating less than usual or not at all;




  • easy bruising or bleeding, unusual weakness; or




  • seizure (black-out or convulsions).



Less serious side effects may include:



  • blurred vision;




  • dry nose or mouth;




  • nausea, stomach pain, constipation, loss of appetite;




  • dizziness, drowsiness;




  • problems with memory or concentration;




  • ringing in your ears; or




  • feeling restless or excited (especially in children).



This is not a complete list of side effects and others may occur. Call your doctor for medical advice about side effects. You may report side effects to FDA at 1 800 FDA 1088.


What other drugs will affect CP Dec Drops (chlorpheniramine and phenylephrine)?


Before using this medication, tell your doctor if you regularly use other medicines that make you sleepy (such as other cold or allergy medicine, sedatives, narcotic pain medicine, sleeping pills, muscle relaxers, and medicine for seizures, depression, or anxiety). They can add to sleepiness caused by chlorpheniramine.

Tell your doctor about all other medications you use, especially:



  • mecamylamine (Inversine);




  • methyldopa (Aldomet);




  • reserpine;




  • a beta-blocker such as atenolol (Tenormin, Tenoretic), carvedilol (Coreg), labetalol (Normodyne, Trandate), metoprolol (Lopressor, Toprol), nadolol (Corgard), propranolol (Inderal, InnoPran), sotalol (Betapace), and others;




  • a barbiturate such as butabarbital (Butisol), secobarbital (Seconal), pentobarbital (Nembutal), or phenobarbital (Solfoton); or




  • an antidepressant such as amitriptyline (Elavil, Vanatrip), doxepin (Sinequan), nortriptyline (Pamelor), and others.



This list is not complete and other drugs may interact with chlorpheniramine and phenylephrine. Tell your doctor about all medications you use. This includes prescription, over-the-counter, vitamin, and herbal products. Do not start a new medication without telling your doctor.



More CP Dec Drops resources


  • CP Dec Drops Side Effects (in more detail)
  • CP Dec Drops Use in Pregnancy & Breastfeeding
  • CP Dec Drops Drug Interactions
  • CP Dec Drops Support Group
  • 0 Reviews for CP Dec - Add your own review/rating


  • AlleRx Suspension MedFacts Consumer Leaflet (Wolters Kluwer)

  • Cardec Drops MedFacts Consumer Leaflet (Wolters Kluwer)

  • Dallergy-JR Sustained-Release Capsules MedFacts Consumer Leaflet (Wolters Kluwer)

  • Ny-Tannic MedFacts Consumer Leaflet (Wolters Kluwer)

  • Relera Controlled-Release Tablets MedFacts Consumer Leaflet (Wolters Kluwer)

  • Rondec MedFacts Consumer Leaflet (Wolters Kluwer)

  • Rynatan Prescribing Information (FDA)

  • Sonahist Prescribing Information (FDA)



Compare CP Dec Drops with other medications


  • Cold Symptoms
  • Hay Fever


Where can I get more information?


  • Your pharmacist can provide more information about chlorpheniramine and phenylephrine.

See also: CP Dec side effects (in more detail)


Crixivan


Generic Name: Indinavir Sulfate
Class: HIV Protease Inhibitors
VA Class: AM800
Chemical Name: [1S-[1α(R*),2α]]-2,3,5-trideoxy-N-(2,3-dihydro -2-hydroxy-1H-inden-1-yl)-5-[2-[[(1,1-dimethylethyl)amino]carbonyl]-4 -(3-pyridinylmethyl)-1-piperazinyl]-2-(phenylmethyl)-d-erythro-pentonamide sulfate (1:1) (salt)
Molecular Formula: C36H47N5O4
CAS Number: 157810-81-6

Introduction

Antiretroviral; HIV protease inhibitor (PI).1 2 3 6 7


Uses for Crixivan


Treatment of HIV Infection


Treatment of HIV infection in conjunction with other antiretrovirals.1


Because of the inconvenient dosing regimen and fluid requirements, indinavir is not recommended for initial therapy.108 Because of the high incidence of nephrolithiasis, ritonavir-boosted indinavir is not recommended for initial therapy.108


Postexposure Prophylaxis of HIV


Postexposure prophylaxis of HIV infection in health-care workers and others exposed occupationally via percutaneous injury or mucous membrane or nonintact skin contact with blood, tissues, or other body fluids associated with increased risk for transmission of the virus.94 95 97 Used in conjunction with other antiretrovirals.95


Postexposure prophylaxis of HIV infection in individuals who have had nonoccupational exposure to blood, genital secretions, or other potentially infectious body fluids of a person known to be infected with HIV when that exposure represents a substantial risk for HIV transmission.184 Used in conjunction with other antiretrovirals.184


Crixivan Dosage and Administration


Administration


Oral Administration


Administer orally.1


If used without low-dose ritonavir, administer with water at least 1 hour before or 2 hours after a meal.1 108 Alternatively, administer with some other liquid (e.g., skim milk, juice, coffee, tea) or with a light meal (e.g., dry toast with jelly, apple juice, coffee with skim milk and sugar; corn flakes with skim milk and sugar).1 Do not administer with a meal high in calories, fat, and protein.1


Some clinicians suggest the drug may be taken without regard to meals if used with low-dose ritonavir (ritonavir-boosted indinavir).108


To ensure adequate hydration, patients should drink at least 1.5 L (approximately 48 ounces) of liquids daily (i.e., every 24 hours).1 4 108 If ritonavir-boosted indinavir is used, some experts suggest patients drink 1.5–2 L of noncaffeinated liquids daily.108


Dosage


Available as indinavir sulfate; dosage expressed as indinavir.1


Must be given in conjunction with other antiretrovirals.1 If used with delavirdine, certain didanosine preparations, efavirenz, lopinavir/ritonavir, nelfinavir, nevirapine, or ritonavir, adjustment in the treatment regimen recommended.1 100 105 108 180 (See Specific Drugs and Food under Interactions.)


Pediatric Patients


Treatment of HIV Infection

Oral

Children 4–15 years of age: 500 mg/m2 every 8 hours under investigation.147


Adults


Treatment of HIV Infection

Oral

800 mg every 8 hours.1 108 If ritonavir-boosted indinavir is used, 800 mg twice daily with low-dose ritonavir (100 or 200 mg twice daily).108


Postexposure Prophylaxis of HIV

Occupational Exposure

Oral

800 mg twice daily boosted with low-dose ritonavir (100 mg twice daily).95 Alternatively, 800 mg every 8 hours (without low-dose ritonavir).95


Initiate postexposure prophylaxis as soon as possible following exposure (within hours rather than days) and continue for 4 weeks, if tolerated.95


Nonoccupational Exposure

Oral

800 mg twice daily boosted with low-dose ritonavir (100 or 200 mg every 12 hours).184 Alternatively, 800 mg every 8 hours (without low-dose ritonavir).184


Initiate postexposure prophylaxis as soon as possible following exposure (preferably ≤72 hours after exposure) and continue for 28 days.184


Special Populations


Hepatic Impairment


Treatment of HIV Infection

Oral

Adults with mild to moderate hepatic impairment due to cirrhosis: 600 mg every 8 hours.1 108


Renal Impairment


Treatment of HIV Infection

Oral

Dosage adjustment not needed.108


Geriatric Patients


Select dosage with caution.1


Cautions for Crixivan


Contraindications



  • Known hypersensitivity to indinavir or any ingredient in the formulation.1




  • Concomitant use with drugs highly dependent on CYP3A for metabolism and for which elevated plasma concentrations are associated with serious and/or life-threatening events (e.g., alprazolam, amiodarone, cisapride, ergot alkaloids, oral midazolam, pimozide, triazolam).1 (See Specific Drugs and Food under Interactions.)



Warnings/Precautions


Warnings


Interactions

Concomitant use with certain drugs not recommended (e.g., lovastatin, rosuvastatin, simvastatin, St. John’s wort, fluticasone) or requires particular caution (e.g., sildenafil, tadalafil, vardenafil).1 (See Specific Drugs and Food under Interactions.)


Renal and GU Effects

Nephrolithiasis/urolithiasis,1 4 26 68 73 sometimes associated with substantial renal impairment, acute renal failure, or pyelonephritis with or without bacteremia, reported.1


Adequate hydration recommended for all patients receiving indinavir.1 108 Risk of nephrolithiasis/urolithiasis may be greater with ritonavir-boosted indinavir compared with indinavir (without low-dose ritonavir).1 108


If signs and symptoms of nephrolithiasis/urolithiasis (flank pain, with or without hematuria or microscopic hematuria) occur, temporary interruption (e.g., for 1–3 days) or discontinuance of therapy may be considered.1


Interstitial nephritis with medullary calcification and cortical atrophy reported in patients with asymptomatic severe leukocyturia (≥100 cells per high power field).1 Monitor patients who have asymptomatic severe leukocyturia (i.e., perform frequent urinalysis); further diagnostic evaluation may be needed.1 Consider discontinuing indinavir in patients with severe leukocyturia.1


Hemolytic Anemia

Acute hemolytic anemia, including cases resulting in death, reported.1


If acute hemolytic anemia occurs, take appropriate measures to treat the condition (including discontinuance of indinavir).1


Hepatic Effects

Acute hepatitis sometimes resulting in hepatic failure and death reported; causal relationship not established.1 116 Generally has occurred in patients with confounding medical conditions and/or receiving concomitant drugs.1


Elevated indirect bilirubin, infrequently associated with increased serum AST (SGOT) or ALT (SGPT) concentrations, reported.1 4 17 23 73


Hyperglycemic Effects

Hyperglycemia, new-onset diabetes mellitus, or exacerbation of preexisting diabetes mellitus reported with use of PIs; diabetic ketoacidosis has occurred.1 88 120 121 122 123


Monitor blood glucose and initiate or adjust dosage of oral hypoglycemic agent or insulin as needed.1


General Precautions


HIV Resistance

Possibility of HIV resistance to indinavir and possible cross-resistance to other PIs.1 147 Effect of indinavir therapy on subsequent therapy with other PIs under investigation.1 147


Hemophilia A and B

Spontaneous bleeding noted with PIs; causal relationship not established.1 40 119


Caution in patients with a history of hemophilia type A or B.1 40 119 Increased hemostatic (e.g., antihemophilic factor) therapy may be needed.1


Immune Reconstitution Syndrome

During initial treatment, patients who respond to antiretroviral therapy may develop an inflammatory response to indolent or residual opportunistic infections (e.g., Mycobacterium avium complex [MAC], M. tuberculosis, cytomegalovirus [CMV], Pneumocystis jiroveci [formerly P. carinii]);1 this may necessitate further evaluation and treatment.1


Adipogenic Effects

Possible redistribution or accumulation of body fat, including central obesity, dorsocervical fat enlargement (“buffalo hump”), peripheral wasting, breast enlargement, and general cushingoid appearance.1


Specific Populations


Pregnancy

Category C.1


Antiretroviral Pregnancy Registry at 800-258-4263.1


Hyperbilirubinemia, generally reported as an increase in indirect bilirubin, has occurred in patients receiving indinavir; it is not known whether administration of the drug to a pregnant woman during the perinatal period can exacerbate physiologic hyperbilirubinemia in the neonate.1


Substantially decreased plasma indinavir concentrations reported during pregnancy.1 172 (See Special Populations under Pharmacokinetics.)


Some experts state use of ritonavir-boosted indinavir is an alternative HIV protease inhibitor (not a preferred PI) for use in pregnant women;172 however optimal dosage of ritonavir-boosted indinavir for use during pregnancy not known.1


Lactation

Distributed into milk in rats; not known whether distributed into human milk.1


Instruct HIV-infected women not to breast-feed because of risk of HIV transmission and risk of adverse effects in the infant.1 57 172


Pediatric Use

Safety and efficacy not established in pediatric patients.1


Has been used in a limited number of HIV-infected children ≥3 months of age.1 39 72 124 125 147 151 152 166 173 Nephrolithiasis/urolithiasis reported more frequently in pediatric patients than in adults.1


Because hyperbilirubinemia has been reported in patients receiving indinavir,1 4 17 23 73 147 the drug should not be used in neonates until further information is available.147


Geriatric Use

Insufficient experience in those ≥65 years of age to determine whether they respond differently than younger adults.1


Use with caution because of age-related decreases in hepatic, renal, and/or cardiac function and concomitant disease and drug therapy.1


Hepatic Impairment

Dosage adjustment recommended in patients with hepatic impairment due to cirrhosis.1 (See Hepatic Impairment under Dosage and Administration.)


Common Adverse Effects


Nausea, abdominal pain, headache, nephrolithiasis/urolithiasis, asymptomatic hyperbilirubinemia.1


Interactions for Crixivan


Metabolized by CYP3A.1


Inhibits CYP3A and, to a lesser extent, CYP2D6.1


Does not inhibit CYP1A2, 2C9, 2E1, or 2B6.1


Drugs Affecting or Metabolized by Hepatic Microsomal Enzymes


Pharmacokinetic interactions likely with drugs that are inhibitors, inducers, or substrates of CYP3A with possible alteration in metabolism of indinavir and/or other drug.1


Specific Drugs and Food










































































































































Drug or Food



Interaction



Comments



Antiarrhythmic agents (amiodarone, systemic lidocaine, quinidine)



Potential increased antiarrhythmic concentrations1


Potential for serious or life-threatening effects (e.g., cardiac arrhythmias) if indinavir used with amiodarone1



Concomitant use with amiodarone contraindicated1


Caution if indinavir used concomitantly with systemic lidocaine or quinidine; monitoring plasma antiarrhythmic concentrations recommended1



Anticonvulsants (carbamazepine, phenobarbital, phenytoin)



Possible decreased plasma concentrations of indinavir; possible decreased antiretroviral effectiveness1


No change in plasma concentrations of carbamazepine167



Use concomitantly with caution;1 consider using alternative anticonvulsants, using ritonavir-boosted indinavir, and/or monitoring indinavir concentrations108



Antifungals, azole (itraconazole, ketoconazole, voriconazole)



Increased concentrations of indinavir when administered with itraconazole, ketoconazole, or fluconazole; no change in AUC of indinavir with fluconazole1 74 108 145


Voriconazole: Pharmacokinetic interactions unlikely with indinavir;108 decreased voriconazole concentrations reported with low-dose ritonavir108



Fluconazole: Dosage adjustment not needed145


Itraconazole: When given with itraconazole 200 mg twice daily, reduce indinavir dosage to 600 mg every 8 hours;1 108 do not use itraconazole dosage >200 mg twice daily108


Ketoconazole: When given with ketoconazole, reduce indinavir dosage to 600 mg every 8 hours1 108


Voriconazole: Dosage adjustment not needed with indinavir1 108


Voriconazole: Concomitant use with ritonavir-boosted indinavir not recommended unless potential benefits outweigh risk108



Antimycobacterials



Isoniazid: No change in AUC of indinavir and clinically unimportant increases in AUC of isoniazid1 74


Rifabutin: Decreased indinavir concentrations and increased rifabutin concentrations1 108


Rifampin: Decreased indinavir concentrations; possible decreased antiretroviral efficacy and increased risk of antiretroviral resistance1



Isoniazid: Dosage adjustment not needed1


Rifabutin: Reduce rifabutin dosage to 150 mg once daily or 300 mg 3 times weekly; increase indinavir dosage to 1 g every 8 hours1 108


Rifampin: Concomitant use not recommended1 108 148


Rifapentine: Concomitant use not recommended108



Atazanavir



Potential for additive hyperbilirubinemia;108 e concomitant use has not been studiede


In vitro evidence of additive antiretroviral effectse



Concomitant use not recommended108 e



Benzodiazepines



Pharmacokinetic interaction with alprazolam, midazolam, or triazolam; potential for prolonged or increased sedation or respiratory depression1



Concomitant use with alprazolam, oral midazolam, or triazolam contraindicated;1 108 some experts state that a single parenteral dose of midazolam can be used with caution in a monitored situation for procedural sedation108



Calcium-channel blocking agents, dihydropyridine (amlodipine, felodipine, isradipine, nicardipine, nifedipine, nimodipine, nisoldipine)



Possible increased concentrations of calcium-channel blocking agent; potential for increased or prolonged therapeutic or adverse effects of the cardiac drug1



Use concomitantly with caution; clinical monitoring recommended1



Cisapride



Pharmacokinetic interaction; potential for serious or life-threatening reactions (e.g., cardiac arrhythmias)1



Concomitant use contraindicated1 108



Corticosteroids (fluticasone)



Fluticasone nasal spray/oral inhalation: Increased plasma fluticasone concentrations with indinavir (with or without low-dose ritonavir) resulting in decreased cortisol concentrations1



Fluticasone nasal spray/oral inhalation: Consider alternative in patients receiving indinavir (without ritonavir), especially when long-term corticosteroid therapy is anticipated; concomitant use with ritonavir-boosted indinavir not recommended unless potential benefits outweigh risk of systemic corticosteroid adverse effects1



Co-trimoxazole



Interaction unlikely1



Dosage adjustment not needed1



Darunavir



Increased concentrations of darunavir and indinavir185



Appropriate dosage for concomitant use of ritonavir-boosted darunavir and indinavir not established185



Delavirdine



Increased peak plasma concentrations and AUC of indinavir; no change in pharmacokinetics of delavirdine1 108 129 144



When given with delavirdine 400 mg 3 times daily (usual delavirdine dosage), reduce indinavir dosage to 600 mg every 8 hours1 108 129



Didanosine



When buffered didanosine preparations administered at the same time as indinavir, decreased AUC of indinavir155


In vitro evidence of synergistic antiretroviral effects1



Administer indinavir and buffered didanosine (pediatric oral solution admixed with antacid) ≥1 hour apart1 4



Efavirenz



Decreased peak plasma concentrations and AUC of indinavir; no change in pharmacokinetics of efavirenz1 149


In vitro evidence of synergistic antiretroviral effects149



Adjustment of efavirenz dosage not needed; increase indinavir dosage to 1 g every 8 hours or consider ritonavir-boosted indinavir108



Ergot alkaloids (dihydroergotamine, ergonovine, ergotamine, methylergonovine)



Possibility of pharmacokinetic interaction; potential for serious or life-threatening reactions (e.g., acute ergot toxicity)1



Concomitant use contraindicated1 108


If treatment of uterine atony and excessive postpartum bleeding is indicated in a woman receiving indinavir, use methylergonovine maleate (Methergine) only if alternative treatments cannot be used and if potential benefits outweigh risks; use methylergonovine at lowest dosage and shortest duration possible147



Estrogens/Progestins



Hormonal contraceptives: Increased AUC of ethinyl estradiol and norethindrone reported with oral contraceptive preparations1



Hormonal contraceptives: Dosage adjustment not needed1 108



Etravirine



Decreased indinavir concentrationsg



Concomitant use not recommended108 g



Fosamprenavir



Studies using amprenavir indicate possible increased plasma amprenavir concentrations and AUC;f concomitant use of ritonavir-boosted fosamprenavir with indinavir not evaluatedf


In vitro evidence of additive antiretroviral effectsf



Appropriate dosages for concomitant use with respect to safety and efficacy not establishedf



Grapefruit juice



Decreased AUC and concentrations of indinavir1 108



Monitor virologic response108



Histamine H2-receptor antagonists (cimetidine)



Pharmacokinetic interaction unlikely with cimetidine1



Dosage adjustment not needed1



HMG-CoA reductase inhibitors (statins)



Decreased clearance and increased concentrations of some HMG-CoA reductase inhibitors with potential for increased risk of myopathy (including rhabdomyolysis)1



Concomitant use with lovastatin, rosuvastatin, or simvastatin not recommended1


If used with atorvastatin, use lowest possible dosage of atorvastatin1


Consider using HMG-CoA reductase inhibitors with low potential for interaction (e.g., fluvastatin, pravastatin)1



Immunosuppressive agents (cyclosporine, sirolimus, tacrolimus)



Potential for increased concentrations of cyclosporine, sirolimus, or tacrolimus1



Lopinavir



Pharmacokinetic interaction; increased indinavir AUC and concentrations108 177



Consider indinavir 600 mg twice daily with 400 mg of lopinavir and 100 mg of ritonavir twice daily108 177



Macrolides (clarithromycin)



Increased AUC of indinavir and clarithromycin; decreased AUC of 14-hydroxyclarithromycin1 74 108 171



Indinavir manufacturer states appropriate dosages for concomitant use with respect to safety and efficacy not established;1 some experts state that modification of usual clarithromycin dosage not necessary in patients with normal renal function; reduce clarithromycin dosage by 50% if Clcr 30–60 mL/minute and reduce by 75% if Clcr <30 mL/minute 108



Maraviroc



Possible increased concentrations of maraviroc108



Recommended dosage of maraviroc is 150 mg twice daily108



Methadone



Pharmacokinetic interactions unlikely1 108



Nelfinavir



Increased AUC of both drugs105 126 127



Appropriate dosages for concomitant use with respect to safety and efficacy not established1 105


Limited data supports use of indinavir 1.2 g twice daily with nelfinavir 1.25 g twice daily108



Nevirapine



Decreased peak and trough plasma concentration and AUC of indinavir; no clinically important change in the pharmacokinetics of nevirapine100 108


In vitro evidence of additive or synergistic antiretroviral effects60



Manufacturers state appropriate dosages for concomitant use with respect to safety and efficacy not established1


Some experts state adjustment of nevirapine dosage not needed; consider increasing indinavir dosage to 1 g every 8 hours or using ritonavir-boosted indinavir100 108



Pimozide



Pharmacokinetic interaction; potential for serious or life-threatening reactions (e.g., cardiac arrhythmias)1



Concomitant use contraindicated1 108



Quinupristin and dalfopristin



Possible increased indinavir plasma concentrations169



Ritonavir



Increased indinavir concentrations and increased ritonavir concentrations;1 5 44 108 concomitant low-dose ritonavir used to therapeutic advantage (ritonavir-boosted indinavir)108


Incidence of renal effects (nephrolithiasis) may be higher when ritonavir and indinavir used concomitantly compared with usual dosage of indinavir alone1



Limited data supports use of indinavir 400 mg twice daily with ritonavir 400 mg twice daily 108 174 180 or indinavir 800 mg twice daily with ritonavir 100 or 200 mg twice daily108 180



Saquinavir



Increased saquinavir concentrations;1 30 no effect on indinavir concentrations108


Data not available on concomitant use with ritonavir-boosted saquinavir30



Appropriate dosages for concomitant use with respect to safety and efficacy not established 1 30



St. John’s wort (Hypericum perforatum)



Decreased indinavir concentrations; possible loss of virologic response and increased risk of lopinavir resistance1



Concomitant use not recommended1 108



Sildenafil



Increased sildenafil concentrations and increased risk of sildenafil-associated adverse effects (e.g., hypotension, visual changes, prolonged erection)1 108 154 170



Use caution and reduced sildenafil dosage (25 mg repeated no more frequently than every 48 hours);1 108 closely monitor for adverse effects (e.g., hypotension, syncope, visual changes, prolonged erection)1 108



Stavudine



Clinically important pharmacokinetic interaction unlikely1 74 108



Tadalafil



Increased tadalafil concentrations and increased risk of tadalafil-associated adverse effects (e.g., hypotension, visual changes, prolonged erection)1 108



Use an initial tadalafil dose of 5 mg and do not exceed a single tadalafil dose of 10 mg in 72 hours108



Tenofovir



Slight alterations in indinavir and tenofovir concentrations;108 d not clinically important108


In vitro evidence of additive or synergistic antiretroviral effectsd



No dosage adjustment needed108



Theophylline



Pharmacokinetic interactions unlikely1



Tipranavir



Data not available to date108



Concomitant use not recommended; appropriate dosage not established108



Trazodone



Possible increased trazodone concentrations; increased risk of trazodone-associated adverse effects1 182



Caution; consider decreased trazodone dosage1 182



Vardenafil



Increased vardenafil concentrations and AUC and increased risk of vardenafil-associated adverse effects (e.g., hypotension, visual changes, prolonged erection); decreased indinavir concentrations108 183



When using indinavir (without ritonavir), do not exceed a single vardenafil dosage of 2.5 mg in 24 hours;1 183 some experts recommend an initial vardenafil dosage of 2.5 mg in 72 hours108



Venlafaxine



Decreased indinavir concentrations; no change in venlafaxine concentrations1



Clinical importance unknown1



Vitamin C



Decreased indinavir concentrations with vitamin C dosage ≥1 g daily108



Monitor virologic response108



Zidovudine



Clinically important pharmacokinetic interactions unlikely1 108


In vitro evidence of synergistic antiretroviral effects1


Crixivan Pharmacokinetics


Absorption


Bioavailability


Well absorbed from GI tract; peak plasma concentrations attained within 1 hour.1 37 38


Food


Presence of food in the GI tract can substantially decrease the extent of absorption of oral indinavir.1 38


Administration with a substantial meal (48.6 g fat, 31.3 g protein; 784 kcal) decreases AUC and peak plasma concentrations by 77 and 84%, respectively; administration with a light meal (e.g., dry toast with jelly, apple juice, coffee with skim milk and sugar; corn flakes with skim milk and sugar) is not associated with clinically important changes in AUC or peak or trough plasma concentrations.1 135


Special Populations


Hepatic impairment: AUC 60% higher in adults with cirrhosis and mild to moderate hepatic impairment compared with adults with normal hepatic function.1


Pregnant women: AUC 74% lower in pregnant women receiving indinavir (without low-dose ritonavir) compared with nonpregnant patients.1


Distribution


Extent


Not fully characterized.65


Distributed into CSF in low concentration in adults21 132 or children.125 134


Not known whether crosses the placenta or is distributed into human milk.1


Plasma Protein Binding


60%.1


Elimination


Metabolism


Metabolized by CYP3A4.1


Elimination Route


Excreted principally in the feces (83%) as unabsorbed drug or metabolites.1


Half-life


1.8 hours.1 37 38


Special Populations


Pharmacokinetics not studied in patients with severe hepatic impairment.1 AUC may be increased and half-life prolonged in patients with hepatic impairment.1 Half-life of 2.8 hours reported in adults with cirrhosis and mild to moderate hepatic impairment.1


Pharmacokinetics not studied in renal impairment.1


Stability


Storage


Oral


Capsules

15–30°C in tightly closed containers.1 Protect from moisture.1 Dispense and store in original container; the desiccant should remain in the original bottle.1


Actions and SpectrumActions



  • Pharmacologically related to other PIs (e.g., atazanavir, fosamprenavir, lopinavir, nelfinavir, ritonavir, saquinavir); differs structurally from these drugs and also differs pharmacologically and structurally from other currently available antiretrovirals.2 3




  • Active against HIV-1 and HIV-2.1 2 3 6 7




  • Inhibits replication of HIV-1 and HIV-2 by interfering with HIV protease.1 2 3 6 7




  • HIV-1 with reduced susceptibility to indinavir have been selected in vitro and have emerged during therapy with the drug.1 3 8 9 10 12 13 14 15 16 51




  • Varying degrees of cross-resistance occur among PIs; only limited data available to date regarding cross-resistance between indinavir and other PIs.1 4 5 7 9 10 11 13 39 168




  • Cross-resistance between indinavir and nucleoside reverse transcriptase inhibitors (NRTIs) or nonnucleoside reverse transcriptase inhibitors (NNRTIs) unlikely since the drugs have different target enzymes and mechanisms of action.1



Advice to Patients



  • Critical nature of compliance with HIV therapy.1 Importance of using indinavir in conjunction with other antiretrovirals—not for monotherapy.1




  • Antiretroviral therapy is not a cure for HIV infection, and opportunistic infections still may occur.1 46 HIV transmission via sexual contact or sharing needles is not prevented by antiretrovirals.1




  • Importance of taking on an empty stomach or with a light meal.1




  • Importance of drinking 1.5 L of liquids daily.1




  • Importance of storing indinavir in the original container; the desiccant should remain in the bottle.1




  • Importance of reading the patient package insert from the manufacturer.1




  • Redistribution/accumulation of body fat may occur, with as yet unknown long-term health effects.1




  • Importance of informing clinicians of existing or contemplated concomitant therapy, including prescription and OTC drugs and dietary or herbal products.1




  • Importance of women informing clinicians if they are or plan to become pregnant or plan to breast-feed.1




  • Importance of advising patients of other important precautionary information.1 (See Cautions.)



Preparations


Excipients in commercially available drug preparations may have clinically important effects in some individuals; consult specific product labeling for details.




























Indinavir Sulfate

Routes



Dosage Forms



Strengths



Brand Names



Manufacturer



Oral



Capsules



100 mg (of indinavir)



Crixivan



Merck



200 mg (of indinavir)



Crixivan



Merck



333 mg (of indinavir)



Crixivan



Merck



400 mg (of indinavir)



Crixivan



Merck


Comparative Pricing


This pricing information is subject to change at the sole discretion of DS Pharmacy. This pricing information was updated 03/2011. Actual costs to patients will vary depending on the use of specific retail or mail-order locations and health insurance copays.


Crixivan 200MG Capsules (MERCK SHARP &amp; DOHME): 360/$475.98 or 1080/$1414.95


Crixivan 400MG Capsules (MERCK SHARP &amp; DOHME): 90/$239.99 or 270/$719.98



Disclaimer

This report on medications is for your information only, and is not considered individual patient advice. Because of the changing nature of drug information, please consult your physician or pharmacist about specific clinical use.


The American Society of Health-System Pharmacists, Inc. and Drugs.com represent that the information provided hereunder was formulated with a reasonable standard of care, and in conformity with professional standards in the field. The American Society of Health-System Pharmacists, Inc. and Drugs.com make no representations or warranties, express or implied, including, but not limited to, any implied warranty of merchantability and/or fitness for a particular purpose, with respect to such information and specifically disclaims all such warranties. Users are advised that decisions regarding drug therapy are complex medical decisions requiring the independent, informed decision of an appropriate health care professional, and the information is provided for informational purposes only. The entire monograph for a drug should be reviewed for a thorough understanding of the drug's actions, uses and side effects. The American Society of Health-System Pharmacists, Inc. and Drugs.com do not endorse or recommend the use of any drug. The information is not a substitute for medical care.

AHFS Drug Information. © Copyright, 1959-2011, Selected Revisions October 2009. American Society of Health-System Pharmacists, Inc., 7272 Wisconsin Avenue, Bethesda, Maryland 20814.


† Use is not currently included in the labeling approved by the US Food and Drug Administration.




References



1. Merck & Company Inc. Crixivan (indinavir sulfate) capsules prescribing information. Whitehouse Station, NJ; 2008 Oct.



2. Dorsey BD, Levin RB, McDaniel SL et al. L-735,524: the design of a potent and orally bioavailable HIV protease inhibitor. J Med Chem. 1994; 37:3443-51. [PubMed 7932573]



3. Vacca JP, Dorsey BD, Schleif WA et al. L-735,524: an orally bioavailable human immunodeficiency virus type 1 protease inhibitor. Proc Natl Acad Sci USA. 1994; 91:4096-100. [PubMed 8171040]



4. Anon. New drugs for HIV infection. Med Lett Drugs Ther. 1996; 38:35-8. [PubMed 8606677]



5. Abbott Laboratories. Norvir (ritonavir) soft gelatin capsules and oral solution prescribing information. North Chicago, IL; 2001 Sept.



6. Vella S. Rationale and experience with reverse transcriptase inhibitors and protease inhibitors. J Acquir Immune Defic Syndr Hum Retrovirol. 1995; 10(Suppl 1):S58-61.



7. Chen Z, Li Y, Schock HB et al. Three-dimensional structure of a mutant HIV-1 protease displaying cross-resistance to all protease inhibitors in clinical trials. J Biol Chem. 1995; 270:21433-6. [PubMed 7665551]



8. Condra JH, Holder DJ, Schleif WA et al. Genetic correlates of in vivo viral resistance to indinavir, a human immunodeficiency virus type 1 protease inhibitor. J Virol. 1996; 70:8270-6. [PubMed 8970946]



9. Tisdale M, Myers RE, Maschera B et al. Cross-resistance analysis of human immunodeficiency virus type 1 variants individually selected for resist

Cuprimine



penicillamine

Dosage Form: capsules


Physicians planning to use penicillamine should thoroughly familiarize themselves with its toxicity, special dosage considerations, and therapeutic benefits. Penicillamine should never be used casually. Each patient should remain constantly under the close supervision of the physician. Patients should be warned to report promptly any symptoms suggesting toxicity.



Cuprimine Description

Penicillamine is a chelating agent used in the treatment of Wilson's disease. It is also used to reduce cystine excretion in cystinuria and to treat patients with severe, active rheumatoid arthritis unresponsive to conventional therapy (see INDICATIONS). It is 3-mercapto-D-valine. It is a white or practically white, crystalline powder, freely soluble in water, slightly soluble in alcohol, and insoluble in ether, acetone, benzene, and carbon tetrachloride. Although its configuration is D, it is levorotatory as usually measured:






[α]25°= -62.5° ± 2° (c = 1, 1N NaOH),
D

calculated on a dried basis.


The empirical formula is C5H11NO2S, giving it a molecular weight of 149.21. The structural formula is:



It reacts readily with formaldehyde or acetone to form a thiazolidine-carboxylic acid. Capsules Cuprimine1 (Penicillamine) for oral administration contain either 125 mg or 250 mg of penicillamine. Each capsule contains the following inactive ingredients: D & C Yellow 10, gelatin, lactose, magnesium stearate, and titanium dioxide. The 125 mg capsule also contains iron oxide.



1

Registered trademark of ATON PHARMA, INC.

COPYRIGHT © 2007 ATON PHARMA, INC.

All rights reserved


Cuprimine - Clinical Pharmacology


Penicillamine is a chelating agent recommended for the removal of excess copper in patients with Wilson's disease. From in vitro studies which indicate that one atom of copper combines with two molecules of penicillamine, it would appear that one gram of penicillamine should be followed by the excretion of about 200 milligrams of copper; however, the actual amount excreted is about one percent of this.


Penicillamine also reduces excess cystine excretion in cystinuria. This is done, at least in part, by disulfide interchange between penicillamine and cystine, resulting in formation of penicillamine-cysteine disulfide, a substance that is much more soluble than cystine and is excreted readily.


Penicillamine interferes with the formation of cross-links between tropocollagen molecules and cleaves them when newly formed.


The mechanism of action of penicillamine in rheumatoid arthritis is unknown although it appears to suppress disease activity. Unlike cytotoxic immunosuppressants, penicillamine markedly lowers IgM rheumatoid factor but produces no significant depression in absolute levels of serum immunoglobulins. Also unlike cytotoxic immunosuppressants which act on both, penicillamine in vitro depresses T-cell activity but not B-cell activity.


In vitro, penicillamine dissociates macroglobulins (rheumatoid factor) although the relationship of the activity to its effect in rheumatoid arthritis is not known.


In rheumatoid arthritis, the onset of therapeutic response to Cuprimine may not be seen for two or three months. In those patients who respond, however, the first evidence of suppression of symptoms such as pain, tenderness, and swelling is generally apparent within three months. The optimum duration of therapy has not been determined. If remissions occur, they may last from months to years, but usually require continued treatment (see DOSAGE AND ADMINISTRATION).


In all patients receiving penicillamine, it is important that Cuprimine be given on an empty stomach, at least one hour before meals or two hours after meals, and at least one hour apart from any other drug, food, milk, antacid, zinc or iron-containing preparation. This permits maximum absorption and reduces the likelihood of inactivation by metal binding in the gastrointestinal tract.



Pharmacokinetics


Penicillamine is absorbed rapidly but incompletely (40-70%) from the gastrointestinal tract, with wide interindividual variations. Food, antacids, and iron reduce absorption of the drug. The peak plasma concentration of penicillamine occurs 1-3 hours after ingestion; it is approximately 1-2 mg/L after an oral dose of 250 mg. The drug appears in the plasma as free penicillamine, penicillamine disulfide, and cysteine-penicillamine disulfide. When prolonged treatment is stopped, there is a slow elimination phase lasting 4-6 days.


More than 80% of plasma penicillamine is bound to proteins, especially albumin and ceruloplasmin. The drug also binds to erythrocytes and macrophages. A small fraction of the dose is metabolized in the liver to S-methyl-D-penicillamine. Excretion is mainly renal, mainly as disulfides.



INDICATIONS


Cuprimine is indicated in the treatment of Wilson's disease, cystinuria, and in patients with severe, active rheumatoid arthritis who have failed to respond to an adequate trial of conventional therapy. Available evidence suggests that Cuprimine is not of value in ankylosing spondylitis.



Wilson's Disease


Wilson's disease (hepatolenticular degeneration) occurs in individuals who have inherited an autosomal recessive defect that leads to an accumulation of copper far in excess of metabolic requirements. The excess copper is deposited in several organs and tissues, and eventually produces pathological effects primarily in the liver, where damage progresses to postnecrotic cirrhosis, and in the brain, where degeneration is widespread. Copper is also deposited as characteristic, asymptomatic, golden-brown Kayser-Fleischer rings in the corneas of all patients with cerebral symptomatology and some patients who are either asymptomatic or manifest only hepatic symptomatology.


Two types of patients require treatment for Wilson's disease: (1) the symptomatic, and (2) the asymptomatic in whom it can be assumed the disease will develop in the future if the patient is not treated.


The diagnosis, if suspected on the basis of family or individual history or physical examination, can be confirmed if the plasma copper-protein ceruloplasmin2 is <20 mg/dL and either a quantitative determination in a liver biopsy specimen shows an abnormally high concentration of copper (>250 mcg/g dry weight) or Kayser-Fleischer rings are present.


Treatment has two objectives:


(1)

to minimize dietary intake of copper;

(2)

to promote excretion and complex formation (i.e., detoxification) of excess tissue copper.

The first objective is attained by a daily diet that contains no more than one or two milligrams of copper. Such a diet should exclude, most importantly, chocolate, nuts, shellfish, mushrooms, liver, molasses, broccoli, and cereals and dietary supplements enriched with copper, and be composed to as great an extent as possible of foods with a low copper content. Distilled or demineralized water should be used if the patient's drinking water contains more than 0.1 mg of copper per liter.


For the second objective, a copper chelating agent is used.


In symptomatic patients this treatment usually produces marked neurologic improvement, fading of Kayser-Fleischer rings, and gradual amelioration of hepatic dysfunction and psychic disturbances.


Clinical experience to date suggests that life is prolonged with the above regimen.


Noticeable improvement may not occur for one to three months. Occasionally, neurologic symptoms become worse during initiation of therapy with Cuprimine. Despite this, the drug should not be withdrawn. Temporary interruption carries an increased risk of developing a sensitivity reaction upon resumption of therapy, although it may result in clinical improvement of neurological symptoms (see WARNINGS). If the neurological symptoms and signs continue to worsen for a month after the initiation of Cuprimine therapy, several short courses of treatment with 2,3 - dimercaprol (BAL) while continuing Cuprimine may be considered.


Treatment of asymptomatic patients has been carried out for over thirty years. Symptoms and signs of the disease appear to be prevented indefinitely if daily treatment with Cuprimine is continued.



2

For quantitative test for serum ceruloplasmin see: Morell, A.G.; Windsor, J.; Sternlieb, I. ; Scheinberg, I.H.: Measurement of the concentration of ceruloplasmin in serum by determination of its oxidase activity, in "Laboratory Diagnosis of Liver Disease", F.W. Sunderman; F.W. Sunderman, Jr. (eds.), St. Louis, Warren H. Green, Inc., 1968, pp. 193-195.


Cystinuria


Cystinuria is characterized by excessive urinary excretion of the dibasic amino acids, arginine, lysine, ornithine, and cystine, and the mixed disulfide of cysteine and homocysteine. The metabolic defect that leads to cystinuria is inherited as an autosomal, recessive trait. Metabolism of the affected amino acids is influenced by at least two abnormal factors: (1) defective gastrointestinal absorption and (2) renal tubular dysfunction.


Arginine, lysine, ornithine, and cysteine are soluble substances, readily excreted. There is no apparent pathology connected with their excretion in excessive quantities.


Cystine, however, is so slightly soluble at the usual range of urinary pH that it is not excreted readily, and so crystallizes and forms stones in the urinary tract. Stone formation is the only known pathology in cystinuria.


Normal daily output of cystine is 40 to 80 mg. In cystinuria, output is greatly increased and may exceed 1 g/day. At 500 to 600 mg/day, stone formation is almost certain. When it is more than 300 mg/day, treatment is indicated.


Conventional treatment is directed at keeping urinary cystine diluted enough to prevent stone formation, keeping the urine alkaline enough to dissolve as much cystine as possible, and minimizing cystine production by a diet low in methionine (the major dietary precursor of cystine). Patients must drink enough fluid to keep urine specific gravity below 1.010, take enough alkali to keep urinary pH at 7.5 to 8, and maintain a diet low in methionine. This diet is not recommended in growing children and probably is contraindicated in pregnancy because of its low protein content (see PRECAUTIONS).


When these measures are inadequate to control recurrent stone formation, Cuprimine may be used as additional therapy, and when patients refuse to adhere to conventional treatment, Cuprimine may be a useful substitute. It is capable of keeping cystine excretion to near normal values, thereby hindering stone formation and the serious consequences of pyelonephritis and impaired renal function that develop in some patients. Bartter and colleagues depict the process by which penicillamine interacts with cystine to form penicillamine-cysteine mixed disulfide as:
























CSSC + PS'CS' + CSSP
PSSP + CS'PS' + CSSP
CSSC + PSSP'2CSSP
CSSC = cystine
CS' = deprotonated
cysteine PSSP = penicillamine disulfide
PS' = deprotonated penicillamine sulfhydryl
CSSP = penicillamine-cysteine mixed disulfide

In this process, it is assumed that the deprotonated form of penicillamine, PS', is the active factor in bringing about the disulfide interchange.



Rheumatoid Arthritis


Because Cuprimine can cause severe adverse reactions, its use in rheumatoid arthritis should be restricted to patients who have severe, active disease and who have failed to respond to an adequate trial of conventional therapy. Even then, benefit-to-risk ratio should be carefully considered. Other measures, such as rest, physiotherapy, salicylates, and corticosteroids should be used, when indicated, in conjunction with Cuprimine (see PRECAUTIONS).



Contraindications


Except for the treatment of Wilson's disease or certain patients with cystinuria, use of penicillamine during pregnancy is contraindicated (see WARNINGS).


Although breast milk studies have not been reported in animals or humans, mothers on therapy with penicillamine should not nurse their infants.


Patients with a history of penicillamine-related aplastic anemia or agranulocytosis should not be restarted on penicillamine (see WARNINGS and ADVERSE REACTIONS).


Because of its potential for causing renal damage, penicillamine should not be administered to rheumatoid arthritis patients with a history or other evidence of renal insufficiency.



Warnings


The use of penicillamine has been associated with fatalities due to certain diseases such as aplastic anemia, agranulocytosis, thrombocytopenia, Goodpasture's syndrome, and myasthenia gravis.


Because of the potential for serious hematological and renal adverse reactions to occur at any time, routine urinalysis, white and differential blood cell count, hemoglobin determination, and direct platelet count must be done twice weekly, together with monitoring of the patient's skin, lymph nodes and body temperature, during the first month of therapy, every two weeks for the next five months, and monthly thereafter. Patients should be instructed to report promptly the development of signs and symptoms of granulocytopenia and/or thrombocytopenia such as fever, sore throat, chills, bruising or bleeding. The above laboratory studies should then be promptly repeated.


Leukopenia and thrombocytopenia have been reported to occur in up to five percent of patients during penicillamine therapy. Leukopenia is of the granulocytic series and may or may not be associated with an increase in eosinophils. A confirmed reduction in WBC below 3500/mm3 mandates discontinuance of penicillamine therapy. Thrombocytopenia may be on an idiosyncratic basis, with decreased or absent megakaryocytes in the marrow, when it is part of an aplastic anemia. In other cases the thrombocytopenia is presumably on an immune basis since the number of megakaryocytes in the marrow has been reported to be normal or sometimes increased. The development of a platelet count below 100,000/mm3, even in the absence of clinical bleeding, requires at least temporary cessation of penicillamine therapy. A progressive fall in either platelet count or WBC in three successive determinations, even though values are still within the normal range, likewise requires at least temporary cessation.


Proteinuria and/or hematuria may develop during therapy and may be warning signs of membranous glomerulopathy which can progress to a nephrotic syndrome. Close observation of these patients is essential. In some patients the proteinuria disappears with continued therapy; in others, penicillamine must be discontinued. When a patient develops proteinuria or hematuria the physician must ascertain whether it is a sign of drug-induced glomerulopathy or is unrelated to penicillamine.


Rheumatoid arthritis patients who develop moderate degrees of proteinuria may be continued cautiously on penicillamine therapy, provided that quantitative 24-hour urinary protein determinations are obtained at intervals of one to two weeks. Penicillamine dosage should not be increased under these circumstances. Proteinuria which exceeds 1 g/24 hours, or proteinuria which is progressively increasing, requires either discontinuance of the drug or a reduction in the dosage. In some patients, proteinuria has been reported to clear following reduction in dosage.


In rheumatoid arthritis patients penicillamine should be discontinued if unexplained gross hematuria or persistent microscopic hematuria develops.


In patients with Wilson's disease or cystinuria the risks of continued penicillamine therapy in patients manifesting potentially serious urinary abnormalities must be weighed against the expected therapeutic benefits.


When penicillamine is used in cystinuria, an annual x-ray for renal stones is advised. Cystine stones form rapidly, sometimes in six months. Up to one year or more may be required for any urinary abnormalities to disappear after penicillamine has been discontinued.


Because of rare reports of intrahepatic cholestasis and toxic hepatitis, liver function tests are recommended every six months for the duration of therapy. In Wilson's disease, these are recommended every three months, at least during the first year of treatment.


Goodpasture's syndrome has occurred rarely. The development of abnormal urinary findings associated with hemoptysis and pulmonary infiltrates on x-ray requires immediate cessation of penicillamine.


Obliterative bronchiolitis has been reported rarely. The patient should be cautioned to report immediately pulmonary symptoms such as exertional dyspnea, unexplained cough or wheezing. Pulmonary function studies should be considered at that time.


Onset of new neurological symptoms has been reported with Cuprimine (see ADVERSE REACTIONS). Occasionally, neurological symptoms become worse during initiation of therapy with Cuprimine (see INDICATIONS). Myasthenic syndrome sometimes progressing to myasthenia gravis has been reported. Ptosis and diplopia, with weakness of the extraocular muscles, are often early signs of myasthenia. In the majority of cases, symptoms of myasthenia have receded after withdrawal of penicillamine.


Most of the various forms of pemphigus have occurred during treatment with penicillamine. Pemphigus vulgaris and pemphigus foliaceus are reported most frequently, usually as a late complication of therapy. The seborrhea-like characteristics of pemphigus foliaceus may obscure an early diagnosis. When pemphigus is suspected, Cuprimine should be discontinued. Treatment has consisted of high doses of corticosteroids alone or, in some cases, concomitantly with an immunosuppressant. Treatment may be required for only a few weeks or months, but may need to be continued for more than a year.


Once instituted for Wilson's disease or cystinuria, treatment with penicillamine should, as a rule, be continued on a daily basis. Interruptions for even a few days have been followed by sensitivity reactions after reinstitution of therapy.



Pregnancy Category D


Penicillamine can cause fetal harm when administered to a pregnant woman. Penicillamine has been shown to be teratogenic in rats when given in doses 6 times higher than the highest dose recommended for human use. Skeletal defects, cleft palates and fetal toxicity (resorptions) have been reported.


There are no controlled studies on the use of penicillamine in pregnant women. Although normal outcomes have been reported, characteristic congenital cutis laxa and associated birth defects have been reported in infants born of mothers who received therapy with penicillamine during pregnancy. Penicillamine should be used in women of childbearing potential only when the expected benefits outweigh the possible hazards. Women on therapy with penicillamine who are of childbearing potential should be apprised of this risk, advised to report promptly any missed menstrual periods or other indications of possible pregnancy, and followed closely for early recognition of pregnancy. If this drug is used during pregnancy, or if the patient becomes pregnant while taking this drug, the patient should be apprised of the potential hazard to the fetus.



Wilson's Disease


Reported experience3 shows that continued treatment with penicillamine throughout pregnancy protects the mother against relapse of the Wilson's disease, and that discontinuation of penicillamine has deleterious effects on the mother, which may be fatal.


If penicillamine is administered during pregnancy to patients with Wilson's disease, it is recommended that the daily dosage be limited to 750 mg. If cesarean section is planned the daily dose should be reduced to 250 mg, but not lower, for the last six weeks of pregnancy and postoperatively until wound healing is complete.



3

Scheinberg, I.H.; Sternlieb, I.: N. Engl. J. Med. 293: 1300-1302, Dec. 18, 1975.


Cystinuria


If possible, penicillamine should not be given during pregnancy to women with cystinuria (see CONTRAINDICATIONS). There are reports of women with cystinuria on therapy with penicillamine who gave birth to infants with generalized connective tissue defects who died following abdominal surgery. If stones continue to form in these patients, the benefits of therapy to the mother must be evaluated against the risk to the fetus.



Rheumatoid Arthritis


Penicillamine should not be administered to rheumatoid arthritis patients who are pregnant (see CONTRAINDICATIONS) and should be discontinued promptly in patients in whom pregnancy is suspected or diagnosed. There is a report that a woman with rheumatoid arthritis treated with less than one gram a day of penicillamine during pregnancy gave birth (cesarean delivery) to an infant with growth retardation, flattened face with broad nasal bridge, low set ears, short neck with loose skin folds, and unusually lax body skin.



Precautions


Some patients may experience drug fever, a marked febrile response to penicillamine, usually in the second to third week following initiation of therapy. Drug fever may sometimes be accompanied by a macular cutaneous eruption. In the case of drug fever in patients with Wilson's disease or cystinuria, penicillamine should be temporarily discontinued until the reaction subsides. Then penicillamine should be reinstituted with a small dose that is gradually increased until the desired dosage is attained. Systemic steroid therapy may be necessary, and is usually helpful, in such patients in whom drug fever and rash develop several times.


In the case of drug fever in rheumatoid arthritis patients, because other treatments are available, penicillamine should be discontinued and another therapeutic alternative tried since experience indicates that the febrile reaction will recur in a very high percentage of patients upon readministration of penicillamine.


The skin and mucous membranes should be observed for allergic reactions. Early and late rashes have occurred. Early rash occurs during the first few months of treatment and is more common. It is usually a generalized pruritic, erythematous, maculopapular or morbilliform rash and resembles the allergic rash seen with other drugs. Early rash usually disappears within days after stopping penicillamine and seldom recurs when the drug is restarted at a lower dosage. Pruritus and early rash may often be controlled by the concomitant administration of antihistamines. Less commonly, a late rash may be seen, usually after six months or more of treatment, and requires discontinuation of penicillamine. It is usually on the trunk, is accompanied by intense pruritus, and is usually unresponsive to topical corticosteroid therapy. Late rash may take weeks to disappear after penicillamine is stopped and usually recurs if the drug is restarted.


The appearance of a drug eruption accompanied by fever, arthralgia, lymphadenopathy or other allergic manifestations usually requires discontinuation of penicillamine.


Certain patients will develop a positive antinuclear antibody (ANA) test and some of these may show a lupus erythematosus-like syndrome similar to drug-induced lupus associated with other drugs. The lupus erythematosus-like syndrome is not associated with hypocomplementemia and may be present without nephropathy. The development of a positive ANA test does not mandate discontinuance of the drug; however, the physician should be alerted to the possibility that a lupus erythematosus-like syndrome may develop in the future.


Some patients may develop oral ulcerations which in some cases have the appearance of aphthous stomatitis. The stomatitis usually recurs on rechallenge but often clears on a lower dosage. Although rare, cheilosis, glossitis and gingivostomatitis have also been reported. These oral lesions are frequently dose-related and may preclude further increase in penicillamine dosage or require discontinuation of the drug.


Hypogeusia (a blunting or diminution in taste perception) has occurred in some patients. This may last two to three months or more and may develop into a total loss of taste; however, it is usually self-limited despite continued penicillamine treatment. Such taste impairment is rare in patients with Wilson's disease.


Penicillamine should not be used in patients who are receiving concurrently gold therapy, antimalarial or cytotoxic drugs, oxyphenbutazone or phenylbutazone because these drugs are also associated with similar serious hematologic and renal adverse reactions.


Patients who have had gold salt therapy discontinued due to a major toxic reaction may be at greater risk of serious adverse reactions with penicillamine but not necessarily of the same type.


Patients who are allergic to penicillin may theoretically have cross-sensitivity to penicillamine. The possibility of reactions from contamination of penicillamine by trace amounts of penicillin has been eliminated now that penicillamine is being produced synthetically rather than as a degradation product of penicillin.


Patients with Wilson's disease or cystinuria should be given 25 mg/day of pyridoxine during therapy, since penicillamine increases the requirement for this vitamin. Patients also may receive benefit from a multivitamin preparation, although there is no evidence that deficiency of any vitamin other than pyridoxine is associated with penicillamine. In Wilson's disease, multivitamin preparations must be copper-free.


Rheumatoid arthritis patients whose nutrition is impaired should also be given a daily supplement of pyridoxine. Mineral supplements should not be given, since they may block the response to penicillamine. Iron deficiency may develop, especially in pediatric patients and in menstruating women. In Wilson's disease, this may be a result of adding the effects of the low copper diet, which is probably also low in iron, and the penicillamine to the effects of blood loss or growth. In cystinuria, a low methionine diet may contribute to iron deficiency, since it is necessarily low in protein. If necessary, iron may be given in short courses, but a period of two hours should elapse between administration of penicillamine and iron, since orally administered iron has been shown to reduce the effects of penicillamine.


Penicillamine causes an increase in the amount of soluble collagen. In the rat this results in inhibition of normal healing and also a decrease in tensile strength of intact skin. In man this may be the cause of increased skin friability at sites especially subject to pressure or trauma, such as shoulders, elbows, knees, toes, and buttocks. Extravasations of blood may occur and may appear as purpuric areas, with external bleeding if the skin is broken, or as vesicles containing dark blood. Neither type is progressive. There is no apparent association with bleeding elsewhere in the body and no associated coagulation defect has been found. Therapy with penicillamine may be continued in the presence of these lesions. They may not recur if dosage is reduced. Other reported effects probably due to the action of penicillamine on collagen are excessive wrinkling of the skin and development of small, white papules at venipuncture and surgical sites.


The effects of penicillamine on collagen and elastin make it advisable to consider a reduction in dosage to 250 mg/day, when surgery is contemplated. Reinstitution of full therapy should be delayed until wound healing is complete.



Carcinogenesis, Mutagenesis, Impairment of Fertility


Long-term animal carcinogenicity studies have not been done with penicillamine. There is a report that five of ten autoimmune disease-prone NZB hybrid mice developed lymphocytic leukemia after 6 months' intraperitoneal treatment with a dose of 400 mg/kg penicillamine 5 days per week.


Penicillamine is directly mutagenic to S. typhimurium strain TA92 in the Ames test; mutagenicity is enhanced by kidney postmitochondrial subcellular fraction 9. Penicillamine does not induce gene mutations in Chinese hamster V79 cells.


Penicillamine induces sister-chromatid exchanges and chromosome aberrations in cultivated mammalian cells. No studies on the effect of penicillamine on fertility are available.



Pregnancy


Pregnancy Category D

(see WARNINGS, Pregnancy)



Nursing Mothers


See CONTRAINDICATIONS.



Pediatric Use


The efficacy of Cuprimine in juvenile rheumatoid arthritis has not been established.



Geriatric Use


Clinical studies of Cuprimine are limited in subjects aged 65 and over; they did not include sufficient numbers of elderly subjects aged 65 and over to adequately determine whether they respond differently from younger subjects. Review of reported clinical trials with penicillamine in the elderly suggest greater risk than in younger patients for overall skin rash and abnormality of taste. In general, dose selection for an elderly patient should be cautious, starting at the low end of the dosing range, reflecting the greater frequency of decreased hepatic, renal or cardiac function, and of concomitant disease or other drugs.


This drug is known to be substantially excreted by the kidney, and the risk of toxic reactions to this drug may be greater in patients with impaired renal function. Because elderly patients are more likely to have decreased renal function, care should be taken in dose selection, and careful monitoring of renal function is recommended.



Adverse Reactions


Penicillamine is a drug with a high incidence of untoward reactions, some of which are potentially fatal. Therefore, it is mandatory that patients receiving penicillamine therapy remain under close medical supervision throughout the period of drug administration (see WARNINGS and PRECAUTIONS).


Reported incidences (%) for the most commonly occurring adverse reactions in rheumatoid arthritis patients are noted, based on 17 representative clinical trials reported in the literature (1270 patients).



Allergic


Generalized pruritus, early and late rashes (5%), pemphigus (see WARNINGS), and drug eruptions which may be accompanied by fever, arthralgia, or lymphadenopathy have occurred (see WARNINGS and PRECAUTIONS). Some patients may show a lupus erythematosus-like syndrome similar to drug-induced lupus produced by other pharmacological agents (see PRECAUTIONS).


Urticaria and exfoliative dermatitis have occurred.


Thyroiditis has been reported; hypoglycemia in association with anti-insulin antibodies has been reported. These reactions are extremely rare.


Some patients may develop a migratory polyarthralgia, often with objective synovitis (see DOSAGE AND ADMINISTRATION).



Gastrointestinal


Anorexia, epigastric pain, nausea, vomiting, or occasional diarrhea may occur (17%).


Isolated cases of reactivated peptic ulcer have occurred, as have hepatic dysfunction including hepatic failure, and pancreatitis. Intrahepatic cholestasis and toxic hepatitis have been reported rarely. There have been a few reports of increased serum alkaline phosphatase, lactic dehydrogenase, and positive cephalin flocculation and thymol turbidity tests.


Some patients may report a blunting, diminution, or total loss of taste perception (12%); or may develop oral ulcerations. Although rare, cheilosis, glossitis, and gingivostomatitis have been reported (see PRECAUTIONS).


Gastrointestinal side effects are usually reversible following cessation of therapy.



Hematological


Penicillamine can cause bone marrow depression (see WARNINGS). Leukopenia (2%) and thrombocytopenia (4%) have occurred. Fatalities have been reported as a result of thrombocytopenia, agranulocytosis, aplastic anemia, and sideroblastic anemia.


Thrombotic thrombocytopenic purpura, hemolytic anemia, red cell aplasia, monocytosis, leukocytosis, eosinophilia, and thrombocytosis have also been reported.



Renal


Patients on penicillamine therapy may develop proteinuria (6%) and/or hematuria which, in some, may progress to the development of the nephrotic syndrome as a result of an immune complex membranous glomerulopathy (see WARNINGS). Renal failure has been reported.



Central Nervous System


Tinnitus, optic neuritis and peripheral sensory and motor neuropathies (including polyradiculoneuropathy, i.e., Guillain-Barré syndrome) have been reported. Muscular weakness may or may not occur with the peripheral neuropathies. Visual and psychic disturbances; mental disorders; and agitation and anxiety have been reported.



Neuromuscular


Myasthenia gravis (see WARNINGS); dystonia.



Other


Adverse reactions that have been reported rarely include thrombophlebitis; hyperpyrexia (see PRECAUTIONS); falling hair or alopecia; lichen planus; polymyositis; dermatomyositis; mammary hyperplasia; elastosis perforans serpiginosa; toxic epidermal necrolysis; anetoderma (cutaneous macular atrophy); and Goodpasture's syndrome, a severe and ultimately fatal glomerulonephritis associated with intra-alveolar hemorrhage (see WARNINGS). Vasculitis, including fatal renal vasculitis, has also been reported. Allergic alveolitis, obliterative bronchiolitis, interstitial pneumonitis and pulmonary fibrosis have been reported in patients with severe rheumatoid arthritis, some of whom were receiving penicillamine. Bronchial asthma also has been reported.


Increased skin friability, excessive wrinkling of skin, and development of small white papules at venipuncture and surgical sites have been reported (see PRECAUTIONS); yellow nail syndrome.


The chelating action of the drug may cause increased excretion of other heavy metals such as zinc, mercury and lead.


There have been reports associating penicillamine with leukemia. However, circumstances involved in these reports are such that a cause and effect relationship to the drug has not been established.



Cuprimine Dosage and Administration


In all patients receiving penicillamine, it is important that Cuprimine be given on an empty stomach, at least one hour before meals or two hours after meals, and at least one hour apart from any other drug, food, or milk. Because penicillamine increases the requirement for pyridoxine, patients may require a daily supplement of pyridoxine (see PRECAUTIONS).



Wilson's Disease


Optimal dosage can be determined by measurement of urinary copper excretion and the determination of free copper in the serum. The urine must be collected in copper-free glassware, and should be quantitatively analyzed for copper before and soon after initiation of therapy with Cuprimine.


Determination of 24-hour urinary copper excretion is of greatest value in the first week of therapy with penicillamine. In the absence of any drug reaction, a dose between 0.75 and 1.5 g that results in an initial 24-hour cupriuresis of over 2 mg should be continued for about three months, by which time the most reliable method of monitoring maintenance treatment is the determination of free copper in the serum. This equals the difference between quantitatively determined total copper and ceruloplasmin-copper. Adequately treated patients will usually have less than 10 mcg free copper/dL of serum. It is seldom necessary to exceed a dosage of 2 g/day. If the patient is intolerant to therapy with Cuprimine, alternative treatment is trientine hydrochloride.


In patients who cannot tolerate as much as 1 g/day initially, initiating dosage with 250 mg/day, and increasing gradually to the requisite amount, gives closer control of the effects of the drug and may help to reduce the incidence of adverse reactions.



Cystinuria


It is recommended that Cuprimine be used along with conventional therapy. By reducing urinary cystine, it decreases crystalluria and stone formation. In some instances, it has been reported to decrease the size of, and even to dissolve, stones already formed.


The usual dosage of Cuprimine in the treatment of cystinuria is 2 g/day for adults, with a range of 1 to 4 g/day. For pediatric patients, dosage can be based on 30 mg/kg/day. The total daily amount should be divided into four doses. If four equal doses are not feasible, give the larger portion at bedtime. If adverse reactions necessitate a reduction in dosage, it is important to retain the bedtime dose.


Initiating dosage with 250 mg/day, and increasing gradually to the requisite amount, gives closer control of the effects of the drug and may help to reduce the incidence of adverse reactions.


In addition to taking Cuprimine, patients should drink copiously. It is especially important to drink about a pint of fluid at bedtime and another pint once during the night when urine is more concentrated and more acid than during the day. The greater the fluid intake, the lower the required dosage of Cuprimine.


Dosage must be individualized to an amount that limits cystine excretion to 100-200 mg/day in those with no history of stones, and below 100 mg/day in those who have had stone formation and/or pain. Thus, in determining dosage, the inherent tubular defect, the patient's size, age, and rate of growth, and his diet and water intake all must be taken into consideration.


The standard nitroprusside cyanide test has been reported useful as a qualitative measure of the effective dose:4 Add 2 mL of freshly prepared 5 percent sodium cyanide to 5 mL of a 24-hour aliquot of protein-free urine and let stand ten minutes. Add 5 drops of freshly prepared 5 percent sodium nitroprusside and mix. Cystine will turn the mixture magenta. If the result is negative, it can be assumed that cystine excretion is less than 100 mg/g creatinine.


Although penicillamine is rarely excreted unchanged, it also will turn the mixture magenta.If there is any question as to which substance is causing the reaction, a ferric chloride test can be done to eliminate doubt: Add 3 percent ferric chloride dropwise to the urine. Penicillamine will turn the urine an immediate and quickly fading blue. Cystine will not produce any change in appearance.



4

Lotz, M.; Potts, J.T. and Bartter, F.C.: Brit. Med. J. 2: 521, Aug. 28, 1965 (in Medical Memoranda).


Rheumatoid Arthritis


The principal rule of treatment with Cuprimine in rheumatoid arthritis is patience. The onset of therapeutic response is typically delayed. Two or three months may be required before the first evidence of a clinical response is noted (see CLINICAL PHARMACOLOGY).


When treatment with Cuprimine has been interrupted because of adverse reactions or other reasons, the drug should be reintroduced cautiously by starting with a lower dosage and increasing slowly.


Initial Therapy

The currently recommended dosage regimen in rheumatoid arthritis begins with a single daily dose of 125 mg or 250 mg, which is thereafter increased at one to three month intervals, by 125 mg or 250 mg/day, as patient response and tolerance indicate. If a satisfactory remission of symptoms is achieved, the dose associated with the remission should be continued (see Maintenance Therapy). If there is no improvement and there are no signs of potentially serious toxicity after two to three months of treatment with doses of 500-750 mg/day, increases of 250 mg/day at two to three month intervals may be continued until a satisfactory remission occurs (see Maintenance Therapy) or signs of toxicity develop (see WARNINGS and PRECAUTIONS). If there is no discernible improvement after three to four months of treatment with 1000 to 1500 mg of penicillamine/day, it may be assumed the patient will not respond and Cuprimine should be discontinued.


Maintenance Therapy

The maintenance dosage of Cuprimine must be individualized, and may require adjustment during the course of treatment. Many patients respond satisfactorily to a dosage within the 500-750 mg/day range. Some need less.


Changes in maintenance dosage levels may not be reflected clinically or in the erythrocyte sedimentation rate for two to three months after each dosage adjustment.


Some patients will subsequently require an increase in the maintenance dosage to achieve maximal disease suppression. In those patients who do respond, but who evidence incomplete suppression of their disease after the first six to nine months of treatment, the daily dosage of Cuprimine may be increased by 125 mg or 250 mg/day at three-month intervals. It is unusual in current practice to employ a dosage in excess of 1 g/day, but up to 1.5 g/day has sometimes been required.


Management of Exacerbations

During the course of treatment some patients may experience an exacerbation of disease activity following an initial good response. These may be self-limited and can subside within twelve weeks. They are usually controlled by the addition of non-steroidal anti-inflammatory drugs, and only if the patient has demonstrated a true "escape" phenomenon (as evidenced by failure of the flare to subside within this time period) should an increase in the maintenance dose ordinarily be considered.


In the rheumatoid patient, migratory polyarthralgia due to penicillamine is extremely difficult to differentiate from an exacerbation of the rheumatoid arthritis. Discontinuance or a substantial reduction in dosage of Cuprimine for up to several weeks will usually determine which of these processes is responsible for the arthralgia.


Duration of Therapy

The optimum duration of therapy with Cuprimine in rheumatoid arthritis has not been determined. If the patient has been in remission for six months or more, a gradual, stepwise dosage reduction in decrements of 125 mg or 250 mg/day at approximately three month intervals may be attempted.


Concomitant Drug Therapy

Cuprimine should not be used in patients who are receiving gold therapy, antimalarial or cytotoxic drugs, oxyphenbutazone, or phenylbutazone (see PRECAUTIONS). Other measures, such as salicylates, other non-steroidal anti-inflammatory drugs, or systemic corticosteroids, may be continued when penicillamine is initiated. After improvement commences, analgesic and anti-inflammatory drugs may be slowly discontinued as symptoms permit. Steroid withdrawal must be done gradually, and many months of treatment with Cuprimine may be required before steroids can be completely eliminated.


Dosage Frequency

Based on clinical experience, dosages up to 500 mg/day can be given as a single daily dose. Dosages in excess of 500 mg/day should be administered in divided doses.



How is Cuprimine Supplied


Capsules Cuprimine, 250 mg, are ivory-colored capsules containing a white or nearly white powder, and are coded Cuprimine and MSD 602. They are supplied as follows:


NDC 25010-705-15 in bottles of 100.



Storage


Keep container tightly closed.



Distributed by:

ATON PHARMA

Lawrenceville

NJ 08648

USA


Manufactured by:

Merck and Co., Inc.

West Point, PA 19486 USA


Issued May 2007


201330






Cuprimine 
penicillamine  capsule










Product Information
Product TypeHUMAN PRESCRIPTION DRUGNDC Product Code (Source)25010-705
Route of AdministrationORALDEA Schedule    























INGREDIENTS
Name (Active Moiety)TypeStrength
Penicillamine (Penicillamine)Active250 MILLIGRAM  In 1 CAPSULE
D&C Yellow 10Inactive 
gelatinInactive 
lactoseInactive 
magnesium stearateInactive 
titanium dioxideInactive 





Product Characteristics
Colorwhite (Ivory)Score