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Drug Interactions between Diltiazem Hydrochloride XT and FloLipid

This report displays the potential drug interactions for the following 2 drugs:

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Major

dilTIAZem simvastatin

Applies to: Diltiazem Hydrochloride XT (diltiazem) and FloLipid (simvastatin)

ADJUST DOSE: Coadministration with diltiazem may significantly increase the plasma concentrations of simvastatin and its active metabolite, simvastatin acid, and potentiate the risk of statin-induced myopathy. The proposed mechanism is diltiazem inhibition of simvastatin metabolism via intestinal and hepatic CYP450 3A4. In ten healthy volunteers, administration of a single 20 mg dose of simvastatin following two weeks of treatment with diltiazem SR 120 mg twice a day resulted in an approximately 4-fold increase in the mean peak plasma concentration (Cmax) of simvastatin and a 3.7-fold increase in that of simvastatin acid compared to administration of simvastatin alone. Diltiazem also increased mean simvastatin systemic exposure (AUC) by nearly 5-fold and elimination half-life by 2.4-fold. Similarly, another pharmacokinetic study found that administration of a single 80 mg dose of simvastatin following ten days of treatment with diltiazem 120 mg twice a day increased the Cmax and AUC of simvastatin by an average of 2.9- and 3.1-fold, respectively, while Cmax and AUC of simvastatin acid each increased by 2.7-fold. In a retrospective study of a cohort of hypertensive patients started consecutively on simvastatin over a two-year period, median cholesterol reduction after approximately 8 weeks of simvastatin treatment was 33.3% in patients who took diltiazem concurrently at a mean dosage of 226 mg/day (n=19), compared to 24.7% in patients who did not take diltiazem (n=116). The authors suggest that coadministration of simvastatin with diltiazem was roughly equivalent in therapeutic potency to doubling the dosage of simvastatin. Another study consisting of 30 Chinese patients found that patients receiving simvastatin 20 mg/day had an additional 1.66% reduction in LDL cholesterol levels during coadministration with diltiazem 60 mg three times a day for 4 weeks compared to administration of simvastatin alone. The additional change in LDL cholesterol showed a nonsignificant positive correlation with the trough serum diltiazem concentration. In addition to enhanced pharmacologic effects, high levels of statin or HMG-CoA reductase inhibitory activity in plasma is also associated with an increased risk of musculoskeletal toxicity. Myopathy manifested as muscle pain and/or weakness associated with grossly elevated creatine kinase exceeding ten times the upper limit of normal has been reported occasionally. Rhabdomyolysis has also occurred rarely, which may be accompanied by acute renal failure secondary to myoglobinuria and may result in death. An analysis of the data from available clinical trials found that patients on diltiazem treated concomitantly with simvastatin 80 mg/day have a slightly increased risk (approximately 1% incidence) of myopathy. The risk in patients taking simvastatin 40 mg/day was not increased by concomitant diltiazem.

MANAGEMENT: Simvastatin dosage should not exceed 10 mg daily when used in combination with diltiazem. The benefits of this combination should be carefully weighed against the potentially increased risk of myopathy including rhabdomyolysis. Fluvastatin, pravastatin, and rosuvastatin are probably safer alternatives in patients receiving diltiazem, since they are not metabolized by CYP450 3A4. All patients receiving statin therapy should be advised to promptly report any unexplained muscle pain, tenderness or weakness, particularly if accompanied by fever, malaise and/or dark colored urine. Therapy should be discontinued if creatine kinase is markedly elevated in the absence of strenuous exercise or if myopathy is otherwise suspected or diagnosed.

References

  1. "Product Information. Cardizem (diltiazem)." Hoechst Marion Roussel PROD (2002):
  2. Renton KW "Inhibition of hepatic microsomal drug metabolism by the calcium channel blockers diltiazem and verapamil." Biochem Pharmacol 34 (1985): 2549-53
  3. Azie NE, Brater DC, Becker PA, Jones DR, Hall SD "The interaction of diltiazem with lovastatin and pravastatin." Clin Pharmacol Ther 64 (1998): 369-77
  4. Tobert JA, Vega JM, Dobrinska M, Gruer PJK "Calcium channel blocker-simvastatin interaction." Clin Pharmacol Ther 65 (1999): 583
  5. Neuvonen PJ, Kantola T, Kivisto KT "Calcium channel blocker-simvastatin interaction - Reply." Clin Pharmacol Ther 65 (1999): 583-5
  6. Yeo KR, Yeo WW, Wallis EJ, Ramsay LE "Enhanced cholesterol reduction by simvastatin in diltiazem-treated patients." Br J Clin Pharmacol 48 (1999): 610-5
  7. Mousa O, Brater DC, Sundblad KJ, Hall SD "The interaction of diltiazem with simvastatin." Clin Pharmacol Ther 67 (2000): 267-74
  8. Yeo KR, Yeo WW "Inhibitory effects of verapamil and diltiazem on simvastatin metabolism in human liver microsomes." Br J Clin Pharmacol 51 (2001): 461-70
  9. Peces R, Pobes A "Rhabdomyolysis associated with concurrent use of simvastatin and diltiazem." Nephron 89 (2001): 117-8
  10. Kanathur N, Mathai MG, Byrd RP Jr, Fields CL, Roy TM "Simvastatin-diltiazem drug interaction resulting in rhabdomyolysis and hepatitis." Tenn Med 94 (2001): 339-41
  11. Worz CR, Bottorff M "The role of cytochrome P450-mediated drug-drug interactions in determining the safety of statins." Expert Opin Pharmacother 2 (2001): 1119-27
  12. Gladding P, Pilmore H, Edwards C "Potentially fatal interaction between diltiazem and statins." Ann Intern Med 140 (2004): W31
  13. Holtzman CW, Wiggins BS, Spinler SA "Role of P-glycoprotein in statin drug interactions." Pharmacotherapy 26 (2006): 1601-7
  14. Neuvonen PJ, Niemi M, Backman JT "Drug interactions with lipid-lowering drugs: Mechanisms and clinical relevance." Clin Pharmacol Ther 80 (2006): 565-81
  15. Neuvonen PJ, Backman JT, Niemi M "Pharmacokinetic comparison of the potential over-the-counter statins simvastatin, lovastatin, fluvastatin and pravastatin." Clin Pharmacokinet 47 (2008): 463-74
  16. Rifkin SI "Multiple drug interactions in a renal transplant patient leading to simvastatin-induced rhabdomyolysis: a case report." Medscape J Med 10 (2008): 264
  17. You JH, Chan WK, Chung PF, Hu M, Tomlinson B "Effects of concomitant therapy with diltiazem on the lipid responses to simvastatin in Chinese subjects." J Clin Pharmacol 50 (2010): 1151-8
  18. Najafian B, Franklin DB, Fogo AB "Acute renal failure and myalgia in a transplant patient." J Am Soc Nephrol 18 (2007): 2870-4
  19. FDA. U.S. Food and Drug Administration "FDA drug safety communication: Ongoing safety review of high-dose Zocor (simvastatin) and increased risk of muscle injury. http://www.fda.gov/Drugs/DrugSafety/PostmarketDrugSafetyInformationforPatientsandProviders/ucm204882.htm" (2010):
View all 19 references

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Drug and food interactions

Major

simvastatin food

Applies to: FloLipid (simvastatin)

GENERALLY AVOID: Coadministration with grapefruit juice may significantly increase the plasma concentrations of lovastatin and simvastatin and their active acid metabolites. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruit. When a single 60 mg dose of simvastatin was coadministered with 200 mL of double-strength grapefruit juice three times a day, simvastatin systemic exposure (AUC) increased by 16-fold and simvastatin acid AUC increased by 7-fold. Administration of a single 20 mg dose of simvastatin with 8 ounces of single-strength grapefruit juice increased the AUC of simvastatin and simvastatin acid by 1.9-fold and 1.3-fold, respectively. The interaction has also been reported with lovastatin, which has a similar metabolic profile to simvastatin. Clinically, high levels of HMG-CoA reductase inhibitory activity in plasma is associated with an increased risk of musculoskeletal toxicity. Myopathy manifested as muscle pain and/or weakness associated with grossly elevated creatine kinase exceeding ten times the upper limit of normal has been reported occasionally. Rhabdomyolysis has also occurred rarely, which may be accompanied by acute renal failure secondary to myoglobinuria and may result in death.

ADJUST DOSING INTERVAL: Fibres such as oat bran and pectin may diminish the pharmacologic effects of HMG-CoA reductase inhibitors by interfering with their absorption from the gastrointestinal tract.

Coadministration with green tea may increase the plasma concentrations of simvastatin. The mechanism of interaction has not been established, but may involve inhibition of organic anion transporting polypeptide (OATP) 1B1- and/or 2B1-mediated hepatic uptake of simvastatin by catechins in green tea. The interaction was suspected in a 61-year-old man who experienced muscle intolerance during treatment with simvastatin while drinking an average of 3 cups of green tea daily. He also experienced similar muscle intolerance (leg cramps without creatine phosphokinase elevation) during treatments with atorvastatin and rosuvastatin while drinking green tea. Pharmacokinetic studies performed during his usual green tea intake demonstrated an approximately two-fold higher exposure to simvastatin lactone (the administered form of simvastatin) than that observed after stopping green tea intake for a month. He was also able to tolerate simvastatin after discontinuing green tea consumption. The authors of the report subsequently conducted two independent studies to assess the effect of different green tea preparations on simvastatin pharmacokinetics. One study was conducted in 12 Italian subjects and the other in 12 Japanese subjects. In the Italian study, administration of a single 20 mg dose of simvastatin following pretreatment with 200 mL of a hot green tea standardized infusion 3 times daily for 14 days (estimated daily intake of 335 mg total catechins and 173 mg epigallocatechin-3-gallate (EGCG), the most abundant and biologically active catechin in green tea) was found to have no significant effect on mean peak plasma concentration (Cmax) or systemic exposure (AUC) of simvastatin lactone and simvastatin acid relative to administration with water. However, green tea increased simvastatin lactone AUC (0-6h) by about two-fold in 3 of the study subjects. In the Japanese study, administration of a single 10 mg dose of simvastatin following pretreatment with 350 mL of a commercial green tea beverage twice daily for 14 days (estimated daily intake of 638 mg total catechins and 322 mg EGCG) did not affect mean simvastatin lactone Cmax or AUC to a statistically significant extent compared to administration with water, but increased mean simvastatin acid Cmax and AUC by 42% and 22%, respectively. Similar to the first study, green tea increased simvastatin lactone AUC (0-6h) by two- to three-fold in 4 of the study subjects. Although not studied, the interaction may also occur with lovastatin due to its similar metabolic profile to simvastatin.

MANAGEMENT: Patients receiving therapy with lovastatin, simvastatin, or red yeast rice (which contains lovastatin) should be advised to avoid the consumption of grapefruit and grapefruit juice. Fluvastatin, pravastatin, pitavastatin, and rosuvastatin are metabolized by other enzymes and may be preferable alternatives in some individuals. All patients receiving statin therapy should be advised to promptly report any unexplained muscle pain, tenderness or weakness, particularly if accompanied by fever, malaise and/or dark colored urine. Therapy should be discontinued if creatine kinase is markedly elevated in the absence of strenuous exercise or if myopathy is otherwise suspected or diagnosed. Also, patients should either refrain from the use of oat bran and pectin, or separate the administration times by at least 2 to 4 hours if concurrent use cannot be avoided. Caution may be advisable when coadministered with green tea or green tea extracts. Dosing reduction of the statin and/or limiting consumption of green tea and green tea products may be required if an interaction is suspected.

References

  1. Richter WO, Jacob BG, Schwandt P "Interaction between fibre and lovastatin." Lancet 338 (1991): 706
  2. "Product Information. Mevacor (lovastatin)." Merck & Co., Inc PROD (2002):
  3. "Product Information. Zocor (simvastatin)." Merck & Co., Inc PROD (2001):
  4. Kantola T, Kivisto KT, Neuvonen PJ "Grapefruit juice greatly increases serum concentrations of lovastatin and lovastatin acid." Clin Pharmacol Ther 63 (1998): 397-402
  5. Bailey DG, Malcolm J, Arnold O, Spence JD "Grapefruit juice-drug interactions." Br J Clin Pharmacol 46 (1998): 101-10
  6. Lilja JJ, Kivisto KT, Neuvonen PJ "Grapefruit juice-simvastatin interaction: Effect on serum concentrations of simvastatin, simvastatin acid, and HMG-CoA reductase inhibitors." Clin Pharmacol Ther 64 (1998): 477-83
  7. Thompson PD, Clarkson P, Karas RH "Statin-associated myopathy." JAMA 289 (2003): 1681-90
  8. Neuvonen PJ, Backman JT, Niemi M "Pharmacokinetic comparison of the potential over-the-counter statins simvastatin, lovastatin, fluvastatin and pravastatin." Clin Pharmacokinet 47 (2008): 463-74
  9. Werba JP, Giroli M, Cavalca V, Nava MC, Tremoli E, Dal Bo L "The effect of green tea on simvastatin tolerability." Ann Intern Med 149 (2008): 286-7
  10. Werba JP, Misaka S, Giroli MG, et al. "Overview of Green Tea Interaction with Cardiovascular Drugs." Curr Pharm Des (2014):
  11. Roth M, Timmermann BN, Hagenbuch B "Interactions of green tea catechins with organic anion-transporting polypeptides." Drug Metab Dispos 39 (2011): 920-6
  12. Knop J, Misaka S, Singer K, et al. "Inhibitory effects of green tea and (-)-epigallocatechin gallate on transport by OATP1B1, OATP1B3, OCT1, OCT2, MATE1, MATE2-K and P-glycoprotein." PLoS One 10 (2015): e0139370
View all 12 references

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Moderate

dilTIAZem food

Applies to: Diltiazem Hydrochloride XT (diltiazem)

MONITOR: Like many CNS-active agents, alcohol can exhibit hypotensive effects. Coadministration with antihypertensive agents including diltiazem may result in additive effects on blood pressure and orthostasis.

MONITOR: Grapefruit juice may increase the plasma concentrations of orally administered diltiazem in some patients. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruit. In a study of ten healthy male volunteers, administration of a single 120 mg oral dose of immediate-release diltiazem in combination with 250 mL of grapefruit juice increased the diltiazem peak plasma concentration (Cmax) and systemic exposure (AUC) by an average of 22% and 20%, respectively, compared to administration with water. The time to reach Cmax (Tmax) and the terminal half-life were not affected, and no statistically significant differences in blood pressure and heart rate were observed during administration with grapefruit juice relative to water. In a different study, repeated administration of 200 mL of grapefruit juice at 0, 2, 4, 8 and 12 hours had no significant effect on the Cmax or AUC of a single 120 mg oral dose of diltiazem, but increased its half-life from 4.1 to 5.1 hours. The ratios for the N-demethyl and deacetyl metabolites to diltiazem were also not affected by grapefruit juice. However, because pharmacokinetic interactions involving grapefruit juice are often subject to a high degree of interpatient variability, the extent to which a given patient may be affected is difficult to predict.

MANAGEMENT: Patients should be advised that alcohol may potentiate the hypotensive effects of diltiazem, especially during the initiation of therapy and following a dosage increase. Caution should be exercised when rising from a sitting or recumbent position, and patients should notify their physician if they experience dizziness, lightheadedness, syncope, orthostasis, or tachycardia. Patients who regularly consume grapefruit or grapefruit juice should be monitored for increased adverse effects of diltiazem such as such as headache, irregular heartbeat, edema, unexplained weight gain, and chest pain. Grapefruit and grapefruit juice should be avoided if an interaction is suspected.

References

  1. Bailey DG, Arnold JMO, Spence JD "Grapefruit juice and drugs - how significant is the interaction." Clin Pharmacokinet 26 (1994): 91-8
  2. Sigusch H, Henschel L, Kraul H, Merkel U, Hoffmann A "Lack of effect of grapefruit juice on diltiazem bioavailability in normal subjects." Pharmazie 49 (1994): 675-9
  3. Bailey DG, Malcolm J, Arnold O, Spence JD "Grapefruit juice-drug interactions." Br J Clin Pharmacol 46 (1998): 101-10
  4. Christensen H, Asberg A, Holmboe AB, Berg KJ "Coadministration of grapefruit juice increases systemic exposure of diltiazem in healthy volunteers." Eur J Clin Pharmacol 58 (2002): 515-520
  5. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
View all 5 references

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Moderate

simvastatin food

Applies to: FloLipid (simvastatin)

MONITOR: Concomitant use of statin medication with substantial quantities of alcohol may increase the risk of hepatic injury. Transient increases in serum transaminases have been reported with statin use and while these increases generally resolve or improve with continued therapy or a brief interruption in therapy, there have been rare postmarketing reports of fatal and non-fatal hepatic failure in patients taking statins. Patients who consume substantial quantities of alcohol and/or have a history of liver disease may be at increased risk for hepatic injury. Active liver disease or unexplained transaminase elevations are contraindications to statin use.

MANAGEMENT: Patients should be counseled to avoid substantial quantities of alcohol in combination with statin medications and clinicians should be aware of the increased risk for hepatotoxicity in these patients.

References

  1. "Product Information. Pravachol (pravastatin)." Bristol-Myers Squibb PROD (2001):
  2. "Product Information. Zocor (simvastatin)." Merck & Co., Inc PROD (2001):
  3. "Product Information. Lescol (fluvastatin)." Novartis Pharmaceuticals PROD (2001):
  4. "Product Information. Lipitor (atorvastatin)." Parke-Davis PROD (2001):
  5. "Product Information. Altocor (lovastatin)." Andrx Pharmaceuticals (2002):
  6. "Product Information. Crestor (rosuvastatin)." AstraZeneca Pharma Inc (2003):
  7. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  8. Cerner Multum, Inc. "Australian Product Information." O 0
  9. "Product Information. Livalo (pitavastatin)." Kowa Pharmaceuticals America (formerly ProEthic) (2010):
View all 9 references

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Moderate

dilTIAZem food

Applies to: Diltiazem Hydrochloride XT (diltiazem)

MONITOR: Calcium-containing products may decrease the effectiveness of calcium channel blockers by saturating calcium channels with calcium. Calcium chloride has been used to manage acute severe verapamil toxicity.

MANAGEMENT: Management consists of monitoring the effectiveness of calcium channel blocker therapy during coadministration with calcium products.

References

  1. Henry M, Kay MM, Viccellio P "Cardiogenic shock associated with calcium-channel and beta blockers: reversal with intravenous calcium chloride." Am J Emerg Med 3 (1985): 334-6
  2. Moller IW "Cardiac arrest following intravenous verapamil combined with halothane anaesthesia." Br J Anaesth 59 (1987): 522-6
  3. Oszko MA, Klutman NE "Use of calcium salts during cardiopulmonary resuscitation for reversing verapamil-associated hypotension." Clin Pharm 6 (1987): 448-9
  4. Schoen MD, Parker RB, Hoon TJ, et al. "Evaluation of the pharmacokinetics and electrocardiographic effects of intravenous verapamil with intravenous calcium chloride pretreatment in normal subjects." Am J Cardiol 67 (1991): 300-4
  5. O'Quinn SV, Wohns DH, Clarke S, Koch G, Patterson JH, Adams KF "Influence of calcium on the hemodynamic and anti-ischemic effects of nifedipine observed during treadmill exercise testing." Pharmacotherapy 10 (1990): 247
  6. Woie L, Storstein L "Successful treatment of suicidal verapamil poisoning with calcium gluconate." Eur Heart J 2 (1981): 239-42
  7. Morris DL, Goldschlager N "Calcium infusion for reversal of adverse effects of intravenous verapamil." JAMA 249 (1983): 3212-3
  8. Guadagnino V, Greengart A, Hollander G, Solar M, Shani J, Lichstein E "Treatment of severe left ventricular dysfunction with calcium chloride in patients receiving verapamil." J Clin Pharmacol 27 (1987): 407-9
  9. Luscher TF, Noll G, Sturmer T, Huser B, Wenk M "Calcium gluconate in severe verapamil intoxication." N Engl J Med 330 (1994): 718-20
  10. Bar-Or D, Gasiel Y "Calcium and calciferol antagonise effect of verapamil in atrial fibrillation." Br Med J (Clin Res Ed) 282 (1981): 1585-6
  11. Lipman J, Jardine I, Roos C, Dreosti L "Intravenous calcium chloride as an antidote to verapamil-induced hypotension." Intensive Care Med 8 (1982): 55-7
  12. McMillan R "Management of acute severe verapamil intoxication." J Emerg Med 6 (1988): 193-6
  13. Perkins CM "Serious verapamil poisoning: treatment with intravenous calcium gluconate." Br Med J 2 (1978): 1127
  14. Moroni F, Mannaioni PF, Dolara A, Ciaccheri M "Calcium gluconate and hypertonic sodium chloride in a case of massive verapamil poisoning." Clin Toxicol 17 (1980): 395-400
View all 14 references

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Drug Interaction Classification

These classifications are only a guideline. The relevance of a particular drug interaction to a specific individual is difficult to determine. Always consult your healthcare provider before starting or stopping any medication.
Major Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit.
Moderate Moderately clinically significant. Usually avoid combinations; use it only under special circumstances.
Minor Minimally clinically significant. Minimize risk; assess risk and consider an alternative drug, take steps to circumvent the interaction risk and/or institute a monitoring plan.
Unknown No interaction information available.

Further information

Always consult your healthcare provider to ensure the information displayed on this page applies to your personal circumstances.