Lipitor Drug Information
Generic name: ATORVASTATIN CALCIUM
Uses of Lipitor
- LIPITOR is indicated:
- To reduce the risk of: o Myocardial infarction (MI), stroke, revascularization procedures, and angina in adults with multiple risk factors for coronary heart disease (CHD) but without clinically evident CHD o MI and stroke in adults with type 2 diabetes mellitus with multiple risk factors for CHD but without clinically evident CHD o Non-fatal MI, fatal and non-fatal stroke, revascularization procedures, hospitalization for congestive heart failure, and angina in adults with clinically evident CHD
- As an adjunct to diet to reduce low-density lipoprotein cholesterol (LDL-C) in: o Adults with primary hyperlipidemia. o Adults and pediatric patients aged 10 years and older with heterozygous familial hypercholesterolemia (HeFH).
- As an adjunct to other LDL-C-lowering therapies, or alone if such treatments are unavailable, to reduce LDL-C in adults and pediatric patients aged 10 years and older with homozygous familial hypercholesterolemia (HoFH).
- As an adjunct to diet for the treatment of adults with: o Primary dysbetalipoproteinemia o Hypertriglyceridemia LIPITOR is an HMG-CoA reductase inhibitor (statin) indicated:
- As an adjunct to other LDL-C-lowering therapies to reduce LDL-C in adults and pediatric patients aged 10 years and older with homozygous familial hypercholesterolemia.
- As an adjunct to diet for the treatment of adults with: o Primary dysbetalipoproteinemia. o Hypertriglyceridemia.
Dosage & Administration of Lipitor
Important Dosage Information • Take
Lipitor orally once daily at any time of the day, with or without food. • Assess LDL-C when clinically appropriate, as early as 4 weeks after initiating Lipitor, and adjust the dosage if necessary. • If a dose is missed, advise patients not to take the missed dose and resume with the next scheduled dose.
Recommended Dosage in Adult Patients
The recommended starting dosage of Lipitor is 10 mg to 20 mg once daily. The dosage range is 10 mg to 80 mg once daily. Patients who require reduction in LDL-C greater than 45% may be started at 40 mg once daily.
Recommended Dosage in Pediatric Patients 10 Years of Age and Older with HeFH The recommended starting dosage of Lipitor is 10 mg once daily.
Dosage Modifications Due to Drug Interactions
Concomitant use of Lipitor with the following drugs requires dosage modification of Lipitor. Anti-Viral Medications • In patients taking saquinavir plus ritonavir, darunavir plus ritonavir, fosamprenavir, fosamprenavir plus ritonavir, elbasvir plus grazoprevir or letermovir, do not exceed Lipitor 20 mg once daily. • In patients taking nelfinavir, do not exceed Lipitor 40 mg once daily. Select Azole Antifungals or Macrolide Antibiotics • In patients taking clarithromycin or itraconazole, do not exceed Lipitor 20 mg once daily.
For additional recommendations regarding concomitant use of Lipitor with other anti-viral medications, azole antifungals or macrolide antibiotics, see Drug Interactions.
Side Effects of Lipitor
Clinical Trials Experience
Because clinical trials are conducted under widely varying conditions, the adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice. Table 1 summarizes adverse reactions reported in ≥ 2% and at a rate greater than placebo in patients treated with LIPITOR (n=8,755), from seventeen placebo-controlled trials. Table 1: Adverse Reactions Occurring in ≥ 2% in Patients LIPITOR-Treated with any Dose and Greater than Placebo Other adverse reactions reported in placebo-controlled trials include: Body as a Whole: malaise, pyrexia Digestive System: abdominal discomfort, eructation, flatulence, hepatitis, cholestasis Musculoskeletal System: musculoskeletal pain, muscle fatigue, neck pain, joint swelling Metabolic and Nutritional System: transaminases increase, liver function test abnormal, blood alkaline phosphatase increase, creatine phosphokinase increase, hyperglycemia Nervous System: nightmare Respiratory System: epistaxis Skin and Appendages: urticaria Special Senses: vision blurred, tinnitus Urogenital System: white blood cells urine positive Elevations in Liver Enzyme Tests Persistent elevations in serum transaminases, defined as more than 3 times the ULN and occurring on 2 or more occasions, occurred in 0.7% of patients who received LIPITOR in clinical trials.
The incidence of these abnormalities was mg, respectively. One patient in clinical trials developed jaundice. Increases in liver enzyme tests in other patients were not associated with jaundice or other clinical signs or symptoms.
Upon dose reduction, drug interruption, or discontinuation, transaminase levels returned to or near pretreatment levels without sequelae. Eighteen of 30 patients with persistent liver enzyme elevations continued treatment with a reduced dose of LIPITOR. Elevations of CK (≥ 10 x ULN) were higher in the high-dose LIPITOR group (0.3%) compared to the low-dose LIPITOR group (0.1%).
Elevations of CK (>10 x ULN) were rare, but were higher in the LIPITOR group (0.1%) compared to placebo (0.0%). Diabetes was reported as an adverse reaction in 6.1% of subjects in the LIPITOR group and 3.8% of subjects in the placebo group. The incidence of fatal hemorrhagic stroke was similar between groups (17 LIPITOR vs. 18 placebo).
The incidence of non-fatal hemorrhagic strokes was significantly greater in the LIPITOR group (38 non-fatal hemorrhagic strokes) as compared to the placebo group (16 non-fatal hemorrhagic strokes). Patients who entered the trial with a hemorrhagic stroke appeared to be at increased risk for hemorrhagic stroke (16% LIPITOR vs. 4% placebo). Adverse Reactions from Clinical Studies of LIPITOR in Pediatric Patients with HeFH In a 26-week controlled study in pediatric patients with HeFH (ages 10 years to 17 years) (n=140, 31% female; 92% White, 1.6% Black or African American, 1.6% Asian, 4.8% other), the safety and tolerability profile of LIPITOR 10 to 20 mg daily, as an adjunct to diet to reduce total cholesterol, LDL-C, and apo B levels, was generally similar to that of placebo.
Postmarketing Experience
The following adverse reactions have been identified during post-approval use of LIPITOR. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. Gastrointestinal Disorders: pancreatitis General Disorders: fatigue Hepatobiliary Disorders: fatal and non-fatal hepatic failure Immune System Disorders: anaphylaxis Injury: tendon rupture Musculoskeletal and Connective Tissue Disorders: rhabdomyolysis, myositis.
There have been rare reports of immune-mediated necrotizing myopathy associated with statin use. Nervous System Disorders: dizziness, peripheral neuropathy. There have been rare reports of cognitive impairment (e.g., memory loss, forgetfulness, amnesia, memory impairment, confusion) associated with the use of all statins.
Cognitive impairment was generally nonserious, and reversible upon statin discontinuation, with variable times to symptom onset (1 day to years) and symptom resolution (median of 3 weeks). There have been rare reports of new-onset or exacerbation of myasthenia gravis, including ocular myasthenia, and reports of recurrence when the same or a different statin was administered. Psychiatric Disorders: depression Respiratory Disorders: interstitial lung disease Skin and Subcutaneous Tissue Disorders: angioneurotic edema, bullous rashes (including erythema multiforme, Stevens-Johnson syndrome, and toxic epidermal necrolysis)
| Adverse Reaction | % Placebo N=7,311 | % 10 mg N=3,908 | % 20 mg N=188 | % 40 mg N=604 | % 80 mg N=4,055 | % Any dose N=8,755 |
|---|---|---|---|---|---|---|
| Nasopharyngitis | 8.2 | 12.9 | 5.3 | 7.0 | 4.2 | 8.3 |
| Arthralgia | 6.5 | 8.9 | 11.7 | 10.6 | 4.3 | 6.9 |
| Diarrhea | 6.3 | 7.3 | 6.4 | 14.1 | 5.2 | 6.8 |
| Pain in extremity | 5.9 | 8.5 | 3.7 | 9.3 | 3.1 | 6.0 |
| Urinary tract infection | 5.6 | 6.9 | 6.4 | 8.0 | 4.1 | 5.7 |
| Dyspepsia | 4.3 | 5.9 | 3.2 | 6.0 | 3.3 | 4.7 |
| Nausea | 3.5 | 3.7 | 3.7 | 7.1 | 3.8 | 4.0 |
| Musculoskeletal pain | 3.6 | 5.2 | 3.2 | 5.1 | 2.3 | 3.8 |
| Muscle spasms | 3.0 | 4.6 | 4.8 | 5.1 | 2.4 | 3.6 |
| Myalgia | 3.1 | 3.6 | 5.9 | 8.4 | 2.7 | 3.5 |
| Insomnia | 2.9 | 2.8 | 1.1 | 5.3 | 2.8 | 3.0 |
| Pharyngolaryngeal pain | 2.1 | 3.9 | 1.6 | 2.8 | 0.7 | 2.3 |
Warnings & Cautions for Lipitor
Myopathy and Rhabdomyolysis LIPITOR may cause myopathy (muscle pain, tenderness, or weakness associated with elevated creatine kinase ) and rhabdomyolysis. Acute kidney injury secondary to myoglobinuria and rare fatalities have occurred as a result of rhabdomyolysis in patients treated with statins, including LIPITOR. Risk Factors for Myopathy Risk factors for myopathy include age 65 years or greater, uncontrolled hypothyroidism, renal impairment, concomitant use with certain other drugs (including other lipid-lowering therapies), and higher LIPITOR dosage.
Steps to Prevent or Reduce the Risk of Myopathy and Rhabdomyolysis LIPITOR exposure may be increased by drug interactions due to inhibition of cytochrome P450 enzyme 3A4 (CYP3A4) and/or transporters (e.g., breast cancer resistant protein, organic anion-transporting polypeptide and P-glycoprotein ), resulting in an increased risk of myopathy and rhabdomyolysis. Concomitant use of cyclosporine, gemfibrozil, tipranavir plus ritonavir, or glecaprevir plus pibrentasvir with LIPITOR is not recommended. LIPITOR dosage modifications are recommended for patients taking certain anti-viral, azole antifungals, or macrolide antibiotic medications.
Cases of myopathy/rhabdomyolysis have been reported with atorvastatin co-administered with lipid modifying doses (>1 gram/day) of niacin, fibrates, colchicine, and ledipasvir plus sofosbuvir. Consider if the benefit of use of these products outweighs the increased risk of myopathy and rhabdomyolysis. Concomitant intake of large quantities, more than 1.2 liters daily, of grapefruit juice is not recommended in patients taking LIPITOR.
Discontinue LIPITOR if markedly elevated CK levels occur or if myopathy is either diagnosed or suspected. Muscle symptoms and CK elevations may resolve if LIPITOR is discontinued. Temporarily discontinue LIPITOR in patients experiencing an acute or serious condition at high risk of developing renal failure secondary to rhabdomyolysis (e.g., sepsis; shock; severe hypovolemia; major surgery; trauma; severe metabolic, endocrine, or electrolyte disorders; or uncontrolled epilepsy).
Inform patients of the risk of myopathy and rhabdomyolysis when starting or increasing the LIPITOR dosage. Instruct patients to promptly report any unexplained muscle pain, tenderness or weakness, particularly if accompanied by malaise or fever.
Immune-Mediated Necrotizing Myopathy There have been rare reports of immune-mediated necrotizing myopathy (IMNM), an autoimmune myopathy, associated with statin use, including reports of recurrence when the same or a different statin was administered. IMNM is characterized by proximal muscle weakness and elevated serum creatine kinase that persists despite discontinuation of statin treatment; positive anti-HMG CoA reductase antibody; muscle biopsy showing necrotizing myopathy; and improvement with immunosuppressive agents. Additional neuromuscular and serologic testing may be necessary.
Treatment with immunosuppressive agents may be required. Discontinue LIPITOR if IMNM is suspected.
Hepatic Dysfunction Increases in serum transaminases have been reported with use of LIPITOR. In most cases, these changes appeared soon after initiation, were transient, were not accompanied by symptoms, and resolved or improved on continued therapy or after a brief interruption in therapy. Persistent increases to more than three times the ULN in serum transaminases have occurred in approximately 0.7% of patients receiving LIPITOR in clinical trials.
There have been rare postmarketing reports of fatal and non-fatal hepatic failure in patients taking statins, including LIPITOR. Patients who consume substantial quantities of alcohol and/or have a history of liver disease may be at increased risk for hepatic injury. Consider liver enzyme testing before LIPITOR initiation and when clinically indicated thereafter.
LIPITOR is contraindicated in patients with acute liver failure or decompensated cirrhosis. If serious hepatic injury with clinical symptoms and/or hyperbilirubinemia or jaundice occurs, promptly discontinue LIPITOR.
Increases in HbA1c and Fasting Serum Glucose Levels Increases in HbA1c and fasting serum glucose levels have been reported with statins, including LIPITOR. Optimize lifestyle measures, including regular exercise, maintaining a healthy body weight, and making healthy food choices.
Increased Risk of Hemorrhagic Stroke in Patients on LIPITOR 80 mg with Recent Hemorrhagic Stroke In a post-hoc analysis of the Stroke Prevention by Aggressive Reduction in Cholesterol Levels (SPARCL) trial where 2,365 adult patients, without CHD who had a stroke or TIA within the preceding 6 months, were treated with LIPITOR 80 mg, a higher incidence of hemorrhagic stroke was seen in the LIPITOR 80 mg group compared to placebo (55, 2.3% LIPITOR vs. 33, 1.4% placebo; HR: p=0.0168). The incidence of fatal hemorrhagic stroke was similar across treatment groups (17 vs. 18 for the atorvastatin and placebo groups, respectively). Some baseline characteristics, including hemorrhagic and lacunar stroke on study entry, were associated with a higher incidence of hemorrhagic stroke in the LIPITOR group.
Consider the risk/benefit of use of LIPITOR 80 mg in patients with recent hemorrhagic stroke.
Drug Interactions with Lipitor
Drug Interactions that may Increase the Risk of Myopathy and Rhabdomyolysis with LIPITOR LIPITOR is a substrate of CYP3A4 and transporters (e.g., OATP1B1/1B3, P-gp, or BCRP). LIPITOR plasma levels can be significantly increased with concomitant administration of inhibitors of CYP3A4 and transporters. Table 2 includes a list of drugs that may increase exposure to LIPITOR and may increase the risk of myopathy and rhabdomyolysis when used concomitantly and instructions for preventing or managing them.
Table 2: Drug Interactions that may Increase the Risk of Myopathy and Rhabdomyolysis with LIPITOR Cyclosporine or Gemfibrozil Clinical Impact: Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR and cyclosporine, an inhibitor of CYP3A4 and OATP1B1. Intervention: Concomitant use of cyclosporine or gemfibrozil with LIPITOR is not recommended. Anti-Viral Medications Clinical Impact: Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR with many anti-viral medications, which are inhibitors of CYP3A4 and/or transporters (e.g., BCRP, OATP1B1/1B3, P-gp, MRP2, and/or OAT2).
Intervention: • Concomitant use of tipranavir plus ritonavir or glecaprevir plus pibrentasvir with LIPITOR is not recommended. • In patients taking lopinavir plus ritonavir, or simeprevir, consider the risk/benefit of concomitant use with atorvastatin. • In patients taking saquinavir plus ritonavir, darunavir plus ritonavir, fosamprenavir, fosamprenavir plus ritonavir, elbasvir plus grazoprevir or letermovir, do not exceed LIPITOR 20 mg. • In patients taking nelfinavir, do not exceed LIPITOR 40 mg. • Consider the risk/benefit of concomitant use of ledipasvir plus sofosbuvir with LIPITOR. • Monitor all patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. Select Azole Antifungals or Macrolide Antibiotics Clinical Impact: Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR with select azole antifungals or macrolide antibiotics, due to inhibition of CYP3A4 and/or transporters. Intervention: In patients taking clarithromycin or itraconazole, do not exceed LIPITOR 20 mg.
Drug Interactions that may Decrease Exposure to LIPITOR Table 3 presents drug interactions that may decrease exposure to LIPITOR and instructions for preventing or managing them. Table 3: Drug Interactions that may Decrease Exposure to LIPITOR Rifampin Clinical Impact: Concomitant administration of LIPITOR with rifampin, an inducer of cytochrome P450 3A4 and inhibitor of OATP1B1, can lead to variable reductions in plasma concentrations of atorvastatin. Intervention: Administer LIPITOR and rifampin simultaneously.
LIPITOR Effects on Other Drugs Table 4 presents
LIPITOR’s effect on other drugs and instructions for preventing or managing them. Table 4: LIPITOR Effects on Other Drugs Oral Contraceptives Clinical Impact: Co-administration of LIPITOR and an oral contraceptive increased plasma concentrations of norethindrone and ethinyl estradiol. Intervention: Consider this when selecting an oral contraceptive for patients taking LIPITOR.
Digoxin Clinical Impact: When multiple doses of LIPITOR and digoxin were co-administered, steady state plasma digoxin concentrations increased. Intervention: Monitor patients taking digoxin appropriately.
| Cyclosporine or Gemfibrozil | |
| Clinical Impact: | Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR and cyclosporine, an inhibitor of CYP3A4 and OATP1B1 [see Clinical Pharmacology (12.3) ]. Gemfibrozil may cause myopathy when given alone. The risk of myopathy and rhabdomyolysis is increased with concomitant use of cyclosporine or gemfibrozil with LIPITOR. |
| Intervention: | Concomitant use of cyclosporine or gemfibrozil with LIPITOR is not recommended. |
| Anti-Viral Medications | |
| Clinical Impact: | Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR with many anti-viral medications, which are inhibitors of CYP3A4 and/or transporters (e.g., BCRP, OATP1B1/1B3, P-gp, MRP2, and/or OAT2) [see Clinical Pharmacology (12.3) ]. Cases of myopathy and rhabdomyolysis have been reported with concomitant use of ledipasvir plus sofosbuvir with LIPITOR. |
| Intervention: | • Concomitant use of tipranavir plus ritonavir or glecaprevir plus pibrentasvir with LIPITOR is not recommended. • In patients taking lopinavir plus ritonavir, or simeprevir, consider the risk/benefit of concomitant use with atorvastatin. • In patients taking saquinavir plus ritonavir, darunavir plus ritonavir, fosamprenavir, fosamprenavir plus ritonavir, elbasvir plus grazoprevir or letermovir, do not exceed LIPITOR 20 mg. • In patients taking nelfinavir, do not exceed LIPITOR 40 mg [see Dosage and Administration (2.5) ]. • Consider the risk/benefit of concomitant use of ledipasvir plus sofosbuvir with LIPITOR. • Monitor all patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. |
| Examples: | Tipranavir plus ritonavir, glecaprevir plus pibrentasvir, lopinavir plus ritonavir, simeprevir, saquinavir plus ritonavir, darunavir plus ritonavir, fosamprenavir, fosamprenavir plus ritonavir, elbasvir plus grazoprevir, letermovir, nelfinavir, and ledipasvir plus sofosbuvir. |
| Select Azole Antifungals or Macrolide Antibiotics | |
| Clinical Impact: | Atorvastatin plasma levels were significantly increased with concomitant administration of LIPITOR with select azole antifungals or macrolide antibiotics, due to inhibition of CYP3A4 and/or transporters [see Clinical Pharmacology (12.3) ]. |
| Intervention: | In patients taking clarithromycin or itraconazole, do not exceed LIPITOR 20 mg [see Dosage and Administration (2.5) ]. Consider the risk/benefit of concomitant use of other azole antifungals or macrolide antibiotics with LIPITOR. Monitor all patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. |
| Examples: | Erythromycin, clarithromycin, itraconazole, ketoconazole, posaconazole, and voriconazole. |
| Niacin | |
| Clinical Impact: | Cases of myopathy and rhabdomyolysis have been observed with concomitant use of lipid modifying dosages of niacin (≥1 gram/day niacin) with LIPITOR. |
| Intervention: | Consider if the benefit of using lipid modifying dosages of niacin concomitantly with LIPITOR outweighs the increased risk of myopathy and rhabdomyolysis. If concomitant use is decided, monitor patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. |
| Fibrates (other than Gemfibrozil) | |
| Clinical Impact: | Fibrates may cause myopathy when given alone. The risk of myopathy and rhabdomyolysis is increased with concomitant use of fibrates with LIPITOR. |
| Intervention: | Consider if the benefit of using fibrates concomitantly with LIPITOR outweighs the increased risk of myopathy and rhabdomyolysis. If concomitant use is decided, monitor patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. |
| Colchicine | |
| Clinical Impact: | Cases of myopathy and rhabdomyolysis have been reported with concomitant use of colchicine with LIPITOR. |
| Intervention: | Consider the risk/benefit of concomitant use of colchicine with LIPITOR. If concomitant use is decided, monitor patients for signs and symptoms of myopathy particularly during initiation of therapy and during upward dose titration of either drug. |
| Grapefruit Juice | |
| Clinical Impact: | Grapefruit juice consumption, especially excessive consumption, more than 1.2 liters/daily, can raise the plasma levels of atorvastatin and may increase the risk of myopathy and rhabdomyolysis. |
| Intervention: | Avoid intake of large quantities of grapefruit juice, more than 1.2 liters daily, when taking LIPITOR. |
| Rifampin | |
| Clinical Impact: | Concomitant administration of LIPITOR with rifampin, an inducer of cytochrome P450 3A4 and inhibitor of OATP1B1, can lead to variable reductions in plasma concentrations of atorvastatin. Due to the dual interaction mechanism of rifampin, delayed administration of LIPITOR after administration of rifampin has been associated with a significant reduction in atorvastatin plasma concentrations. |
| Intervention: | Administer LIPITOR and rifampin simultaneously. |
| Oral Contraceptives | |
| Clinical Impact: | Co-administration of LIPITOR and an oral contraceptive increased plasma concentrations of norethindrone and ethinyl estradiol [see Clinical Pharmacology (12.3) ]. |
| Intervention: | Consider this when selecting an oral contraceptive for patients taking LIPITOR. |
| Digoxin | |
| Clinical Impact: | When multiple doses of LIPITOR and digoxin were co-administered, steady state plasma digoxin concentrations increased [see Clinical Pharmacology (12.3) ]. |
| Intervention: | Monitor patients taking digoxin appropriately. |
| Co-administered drug and dosage regimen | Atorvastatin | ||
|---|---|---|---|
| Dosage (mg) | Ratio of AUC Represents ratio of treatments (co-administered drug plus atorvastatin vs. atorvastatin alone). | Ratio of Cmax | |
| See Sections 5.1 and 7 for clinical significance. Cyclosporine 5.2 mg/kg/day, stable dose | 10 mg QD Once daily for 28 days | 8.69 | 10.66 |
| Tipranavir 500 mg BID Twice daily /ritonavir 200 mg BID, 7 days | 10 mg SD Single dosage | 9.36 | 8.58 |
| Glecaprevir 400 mg QD /pibrentasvir 120 mg QD, 7 days | 10 mg QD for 7 days | 8.28 | 22.00 |
| Telaprevir 750 mg q8h Every 8 hours, 10 days | 20 mg SD | 7.88 | 10.60 |
| , The dose of saquinavir plus ritonavir in this study is not the clinically used dose. The increase in atorvastatin exposure when used clinically is likely to be higher than what was observed in this study. Therefore, caution should be applied and the lowest dose necessary should be used. Saquinavir 400 mg BID /ritonavir 400 mg BID, 15 days | 40 mg QD for 4 days | 3.93 | 4.31 |
| Elbasvir 50 mg QD /grazoprevir 200 mg QD, 13 days | 10 mg SD | 1.94 | 4.34 |
| Simeprevir 150 mg QD, 10 days | 40 mg SD | 2.12 | 1.70 |
| Clarithromycin 500 mg BID, 9 days | 80 mg QD for 8 days | 4.54 | 5.38 |
| Darunavir 300 mg BID /ritonavir 100 mg BID, 9 days | 10 mg QD for 4 days | 3.45 | 2.25 |
| Itraconazole 200 mg QD, 4 days | 40 mg SD | 3.32 | 1.20 |
| Letermovir 480 mg QD, 10 days | 20 mg SD | 3.29 | 2.17 |
| Fosamprenavir 700 mg BID /ritonavir 100 mg BID, 14 days | 10 mg QD for 4 days | 2.53 | 2.84 |
| Fosamprenavir 1400 mg BID, 14 days | 10 mg QD for 4 days | 2.30 | 4.04 |
| Nelfinavir 1250 mg BID, 14 days | 10 mg QD for 28 days | 1.74 | 2.22 |
| Grapefruit Juice, 240 mL QD, Greater increases in AUC (ratio of AUC up to 2.5) and/or Cmax (ratio of Cmax up to 1.71) have been reported with excessive grapefruit consumption (≥ 750 mL-1.2 liters per day). | 40 mg SD | 1.37 | 1.16 |
| Diltiazem 240 mg QD, 28 days | 40 mg SD | 1.51 | 1.00 |
| Erythromycin 500 mg QID Four times daily, 7 days | 10 mg SD | 1.33 | 1.38 |
| Amlodipine 10 mg, single dose | 80 mg SD | 1.18 | 0.91 |
| Cimetidine 300 mg QID, 2 weeks | 10 mg QD for 2 weeks | 1.00 | 0.89 |
| Colestipol 10 g BID, 24 weeks | 40 mg QD for 8 weeks | NA | 0.74 Ratio based on a single sample taken 8-16 h post dose. |
| Maalox TC ® 30 mL QID, 17 days | 10 mg QD for 15 days | 0.66 | 0.67 |
| Efavirenz 600 mg QD, 14 days | 10 mg for 3 days | 0.59 | 1.01 |
| Rifampin 600 mg QD, 7 days (co‑administered) Due to the dual interaction mechanism of rifampin, simultaneous co-administration of atorvastatin with rifampin is recommended, as delayed administration of atorvastatin after administration of rifampin has been associated with a significant reduction in atorvastatin plasma concentrations. | 40 mg SD | 1.12 | 2.90 |
| Rifampin 600 mg QD, 5 days (doses separated) | 40 mg SD | 0.20 | 0.60 |
| Gemfibrozil 600 mg BID, 7 days | 40 mg SD | 1.35 | 1.00 |
| Fenofibrate 160 mg QD, 7 days | 40 mg SD | 1.03 | 1.02 |
| Boceprevir 800 mg TID Three times daily, 7 days | 40 mg SD | 2.32 | 2.66 |
| Atorvastatin | Co-administered drug and dosage regimen | ||
|---|---|---|---|
| Drug/Dosage (mg) | Ratio of AUC | Ratio of Cmax | |
| 80 mg QD Once daily for 15 days | Antipyrine, 600 mg SD Single dosage | 1.03 | 0.89 |
| 80 mg QD for 10 days | See Section 7 for clinical significance. Digoxin 0.25 mg QD, 20 days | 1.15 | 1.20 |
| 40 mg QD for 22 days | Oral contraceptive QD, 2 months - norethindrone 1 mg - ethinyl estradiol 35 µg | 1.28 1.19 | 1.23 1.30 |
| 10 mg SD | Tipranavir 500 mg BID Twice daily /ritonavir 200 mg BID, 7 days | 1.08 | 0.96 |
| 10 mg QD for 4 days | Fosamprenavir 1400 mg BID, 14 days | 0.73 | 0.82 |
| 10 mg QD for 4 days | Fosamprenavir 700 mg BID /ritonavir 100 mg BID, 14 days | 0.99 | 0.94 |
Pregnancy Safety for Lipitor
Pregnancy Risk Summary Discontinue LIPITOR when pregnancy is recognized. Alternatively, consider the ongoing therapeutic needs of the individual patient. LIPITOR decreases synthesis of cholesterol and possibly other biologically active substances derived from cholesterol; therefore, LIPITOR may cause fetal harm when administered to pregnant patients based on the mechanism of action.
In addition, treatment of hyperlipidemia is not generally necessary during pregnancy. Atherosclerosis is a chronic process and the discontinuation of lipid-lowering drugs during pregnancy should have little impact on the outcome of long-term therapy of primary hyperlipidemia for most patients. Available data from case series and prospective and retrospective observational cohort studies over decades of use with statins in pregnant women have not identified a drug-associated risk of major congenital malformations.
Published data from prospective and retrospective observational cohort studies with LIPITOR use in pregnant women are insufficient to determine if there is a drug-associated risk of miscarriage (see Data ). In animal reproduction studies, no adverse developmental effects were observed in pregnant rats or rabbits orally administered atorvastatin at doses that resulted in up to 30 and 20 times, respectively, the human exposure at the maximum recommended human dose (MRHD) of 80 mg, based on body surface area (mg/m 2 ). In rats administered atorvastatin during gestation and lactation, decreased postnatal growth and development delay were observed at doses ≥ 6 times the MRHD (see Data ).
The estimated background risk of major birth defects and miscarriage for the indicated population is unknown. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2-4% and 15-20%, respectively. Data Human Data A Medicaid cohort linkage study of 1,152 statin-exposed pregnant women compared to 886,996 controls did not find a significant teratogenic effect from maternal use of statins in the first trimester of pregnancy, after adjusting for potential confounders – including maternal age, diabetes mellitus, hypertension, obesity, and alcohol and tobacco use – using propensity score-based methods.
The relative risk of congenital malformations between the group with statin use and the group with no statin use in the first trimester was 1.07 (95% confidence interval 0.85 to 1.37) after controlling for confounders, particularly pre-existing diabetes mellitus. There were also no statistically significant increases in any of the organ-specific malformations assessed after accounting for confounders. In the majority of pregnancies, statin treatment was initiated prior to pregnancy and was discontinued at some point in the first trimester when pregnancy was identified.
Study limitations include reliance on physician coding to define the presence of a malformation, lack of control for certain confounders such as body mass index, use of prescription dispensing as verification for the use of a statin, and lack of information on non-live births. Animal Data Atorvastatin was administered to pregnant rats and rabbits during organogenesis at oral doses up to 300 mg/kg/day and 100 mg/kg/day, respectively. Atorvastatin was not teratogenic in rats at doses up to 300 mg/kg/day or in rabbits at doses up to 100 mg/kg/day.
These doses resulted in multiples of about 30 times (rat) or 20 times (rabbit) the human exposure at the MRHD based on surface area (mg/m2). In rats, the maternally toxic dose of 300 mg/kg resulted in increased post-implantation loss and decreased fetal body weight. At the maternally toxic doses of 50 and 100 mg/kg/day in rabbits, there was increased post-implantation loss, and at 100 mg/kg/day fetal body weights were decreased.
Pup development was delayed (rotorod performance at 100 mg/kg/day and acoustic startle at 225 mg/kg/day; pinnae detachment and eye-opening at 225 mg/kg/day). Atorvastatin crosses the rat placenta and reaches a level in fetal liver equivalent to that of maternal plasma.
Pediatric Use of Lipitor
Pediatric Use The safety and effectiveness of LIPITOR as an adjunct to diet to reduce LDL-C have been established pediatric patients 10 years of age and older with HeFH. Use of LIPITOR for this indication is based on a double-blind, placebo-controlled clinical trial in 187 pediatric patients 10 years of age and older with HeFH. In this limited controlled trial, there was no significant effect on growth or sexual maturation in the males or females or on menstrual cycle length in females.
The safety and effectiveness of LIPITOR as an adjunct to other LDL-C-lowering therapies to reduce LDL-C have been established pediatric patients 10 years of age and older with HoFH. Use of LIPITOR for this indication is based on a trial without a concurrent control group in 8 pediatric patients 10 years of age and older with HoFH. The safety and effectiveness of LIPITOR have not been established in pediatric patients younger than 10 years of age with HeFH or HoFH, or in pediatric patients with other types of hyperlipidemia (other than HeFH or HoFH).
Contraindications for Lipitor
- Acute liver failure or decompensated cirrhosis
- Hypersensitivity to atorvastatin or any excipients in LIPITOR. Hypersensitivity reactions, including anaphylaxis, angioneurotic edema, erythema multiforme, Stevens-Johnson syndrome, and toxic epidermal necrolysis, have been reported.
- Hypersensitivity to atorvastatin or any excipient in LIPITOR.
Overdosage Information for Lipitor
No specific antidotes for LIPITOR are known. Contact Poison Control (1-800-222-1222) for latest recommendations. Due to extensive drug binding to plasma proteins, hemodialysis is not expected to significantly enhance LIPITOR clearance.
Clinical Studies of Lipitor
In this double-blind, placebo-controlled trial, patients were treated with anti-hypertensive therapy (goal BP <140/90 mm Hg for patients without diabetes; <130/80 mm Hg for patients with diabetes) and allocated to either LIPITOR 10 mg daily (n=5,168) or placebo (n=5,137), using a covariate adaptive method which took into account the distribution of nine baseline characteristics of patients already enrolled and minimized the imbalance of those characteristics across the groups. Patients were followed for a median duration of 3.3 years. The effect of 10 mg/day of LIPITOR on lipid levels was similar to that seen in previous clinical trials.
LIPITOR significantly reduced the rate of coronary events with a relative risk reduction of 36%. The risk reduction was consistent regardless of age, smoking status, obesity, or presence of renal dysfunction. The effect of LIPITOR was seen regardless of baseline LDL levels.
Figure 1: Effect of LIPITOR 10 mg/day on Cumulative Incidence of Non-Fatal Myocardial Infarction or Coronary Heart Disease Death (in ASCOT-LLA) LIPITOR also significantly decreased the relative risk for revascularization procedures by 42% (incidences of 1.4% for LIPITOR and 2.5% for placebo). Although the reduction of fatal and non-fatal strokes did not reach a pre-defined significance level (p=0.01), a favorable trend was observed with a 26% relative risk reduction (incidences of 1.7% for LIPITOR and 2.3% for placebo). There was no significant difference between the treatment groups for death due to cardiovascular causes (p=0.51) or noncardiovascular causes (p=0.17).
No subjects on hemodialysis were enrolled in the trial. The primary endpoint was the occurrence of any of the major cardiovascular events: myocardial infarction, acute CHD death, unstable angina, coronary revascularization, or stroke. The primary analysis was the time to first occurrence of the primary endpoint.
Baseline characteristics of subjects were: mean age of 62 years, mean HbA1c 7.7%; median /day on lipid levels was similar to that seen in previous clinical trials. An effect of LIPITOR was seen regardless of age, sex, or baseline lipid levels. There was no significant difference between the treatment groups for angina, revascularization procedures, and acute CHD death.
There were 61 deaths in the LIPITOR group vs. 82 deaths in the placebo group (HR 0.73, p=0.059). Figure 2: Effect of LIPITOR 10 mg/day on Time to Occurrence of Major Cardiovascular Event (myocardial infarction, acute CHD death, unstable angina, coronary revascularization, or stroke) in CARDS In the Treating to New Targets Study (TNT), the effect of LIPITOR 80 mg/day vs. Subjects were randomly assigned to either 10 mg/day or 80 mg/day of LIPITOR and followed for a median duration of 4.9 years.
The mean LDL-C, TC, TG, non-HDL, and HDL cholesterol levels at 12 weeks were mg/dL during treatment with 80 mg of LIPITOR and mg/dL during treatment with 10 mg of LIPITOR. The overall risk reduction was consistent regardless of age (<65, ≥65) or sex. Figure 3: Effect of LIPITOR 80 mg/day vs. 10 mg/day on Time to Occurrence of Major Cardiovascular Events (TNT) Table 7: Overview of Efficacy Results in TNT 1.67 Of the events that comprised the primary efficacy endpoint, treatment with LIPITOR 80 mg/day significantly reduced the rate of non-fatal, non-procedure related MI and fatal and non-fatal stroke, but not CHD death or resuscitated cardiac arrest (Table 7).
Of the predefined secondary endpoints, treatment with LIPITOR 80 mg/day significantly reduced the rate of coronary revascularization, angina, and hospitalization for heart failure, but not peripheral vascular disease. The reduction in the rate of CHF with hospitalization was only observed in the 8% of patients with a prior history of CHF. There was no significant difference between the treatment groups for all-cause mortality (Table 7).
The proportions of subjects who experienced cardiovascular death, including the components of CHD death and fatal stroke, were numerically smaller in the LIPITOR 80 mg group than in the LIPITOR 10 mg treatment group. The proportions of subjects who experienced noncardiovascular death were numerically larger in the LIPITOR 80 mg group than in the LIPITOR 10 mg treatment group. Primary Hyperlipidemia in Adults LIPITOR reduces total-C, LDL-C, apo B, and TG, and increases HDL-C in patients with hyperlipidemia (heterozygous familial and nonfamilial) and mixed dyslipidemia.
Therapeutic response is seen within 2 weeks, and maximum response is usually achieved within 4 weeks and maintained during chronic therapy. In two multicenter, placebo-controlled, dose-response trials in patients with hyperlipidemia, LIPITOR given as a single dose over 6 weeks, significantly reduced total-C, LDL-C, apo B, and TG. (Pooled results are provided in Table 8.) Table 8: Dose Response in Patients with Primary Hyperlipidemia (Adjusted Mean % Change From Baseline) Results are pooled from 2 dose response trials. 5 In three multicenter, double-blind trials in patients with hyperlipidemia, LIPITOR was compared to other statins. After randomization, patients were treated for 16 weeks with either LIPITOR 10 mg per day or a fixed dose of the comparative agent (Table 9).
Table 9: Mean Percentage Change From Baseline at Endpoint (Double-Blind, Randomized, Active-Controlled Trials) Table 9 does not contain data comparing the effects of LIPITOR 10 mg and higher dosages of lovastatin, pravastatin, and simvastatin. The drugs compared in the trials summarized in the table are not necessarily exchangeable. Hypertriglyceridemia in Adults The response to LIPITOR in 64 patients with isolated hypertriglyceridemia treated across several clinical trials is shown in the table below (Table 10).
For the LIPITOR-treated patients, median (min, max) baseline TG level was 565 (267-1502). Table 10: Combined Patients with Isolated Elevated TG: Median (min, max) Percentage Change From Baseline Dysbetalipoproteinemia in Adults The results of an open-label crossover trial of 16 patients (genotypes: 14 apo E2/E2 and 2 apo E3/E2) with dysbetalipoproteinemia are shown in the table below (Table 11). The mean LDL-C reduction in this trial was 18%.
Five of the 29 patients had absent LDL-receptor function. Of these, 2 patients also had a portacaval shunt and had no significant reduction in LDL-C. The remaining 3 receptor-negative patients had a mean LDL-C reduction of 22%.
Inclusion in the trial required 1 a baseline LDL-C level ≥190 mg/dL or 2 a baseline LDL-C level ≥160 mg/dL and positive family history of FH or documented premature cardiovascular disease in a first or second-degree relative. The mean baseline mg/dL in the placebo group. LIPITOR significantly decreased plasma levels of total-C, LDL-C, TG, and apolipoprotein B during the 26-week double-blind phase (see Table 12).
All patients had a clinical diagnosis of HeFH confirmed by genetic analysis (if not already confirmed by family history). Approximately 98% were White, and less than 1% were Black, African American or Asian. Mean LDL-C at baseline was 232 mg/dL.
The starting atorvastatin dosage was 10 mg once daily and doses were adjusted to achieve a target of <130 mg/dL LDL-C. The reductions in LDL-C from baseline were generally consistent across age groups within the trial as well as with previous clinical trials in both adult and pediatric placebo-controlled trials. Effect of LIPITOR 10 mg/day on Cumulative Incidence of Non-Fatal Myocardial Infarction or Coronary Heart Disease Death (in ASCOT-LLA) Effect of LIPITOR 10 mg/day on Time to Occurrence of Major Cardiovascular Event (myocardial infarction, acute CHD death, unstable angina, coronary revascularization, or stroke) in CARDS Effect of LIPITOR 80 mg/day vs. 10 mg/day on Time to Occurrence of Major Cardiovascular Events (TNT)
| HR=hazard ratio; CHD=coronary heart disease; CI=confidence interval; MI=myocardial infarction; CHF=congestive heart failure; CV=cardiovascular; PVD=peripheral vascular disease; CABG=coronary artery bypass graft | |||||
| Confidence intervals for the Secondary Endpoints were not adjusted for multiple comparisons | |||||
| Endpoint | Atorvastatin 10 mg (N=5,006) | Atorvastatin 80 mg (N=4,995) | HR Atorvastatin 80 mg: atorvastatin 10 mg (95%CI) | ||
| PRIMARY ENDPOINT | n | (%) | n | (%) | |
| First major cardiovascular endpoint | 548 | (10.9) | 434 | (8.7) | 0.78 (0.69, 0.89) |
| Components of the Primary Endpoint | |||||
| CHD death | 127 | (2.5) | 101 | (2.0) | 0.80 (0.61, 1.03) |
| Non-fatal, non-procedure related MI | 308 | (6.2) | 243 | (4.9) | 0.78 (0.66, 0.93) |
| Resuscitated cardiac arrest | 26 | (0.5) | 25 | (0.5) | 0.96 (0.56, 1.67) |
| Stroke (fatal and non-fatal) | 155 | (3.1) | 117 | (2.3) | 0.75 (0.59, 0.96) |
| SECONDARY ENDPOINTS Secondary endpoints not included in primary endpoint | |||||
| First CHF with hospitalization | 164 | (3.3) | 122 | (2.4) | 0.74 (0.59, 0.94) |
| First PVD endpoint | 282 | (5.6) | 275 | (5.5) | 0.97 (0.83, 1.15) |
| First CABG or other coronary revascularization procedure Component of other secondary endpoints | 904 | (18.1) | 667 | (13.4) | 0.72 (0.65, 0.80) |
| First documented angina endpoint | 615 | (12.3) | 545 | (10.9) | 0.88 (0.79, 0.99) |
| All-cause mortality | 282 | (5.6) | 284 | (5.7) | 1.01 (0.85, 1.19) |
| Components of All-Cause Mortality | |||||
| Cardiovascular death | 155 | (3.1) | 126 | (2.5) | 0.81 (0.64, 1.03) |
| Noncardiovascular death | 127 | (2.5) | 158 | (3.2) | 1.25 (0.99, 1.57) |
| Cancer death | 75 | (1.5) | 85 | (1.7) | 1.13 (0.83, 1.55) |
| Other non-CV death | 43 | (0.9) | 58 | (1.2) | 1.35 (0.91, 2.00) |
| Suicide, homicide, and other traumatic non-CV death | 9 | (0.2) | 15 | (0.3) | 1.67 (0.73, 3.82) |
| Dose | N | TC | LDL‑C | Apo B | TG | HDL‑C |
| Placebo | 21 | 4 | 4 | 3 | 10 | -3 |
| 10 | 22 | -29 | -39 | -32 | -19 | 6 |
| 20 | 20 | -33 | -43 | -35 | -26 | 9 |
| 40 | 21 | -37 | -50 | -42 | -29 | 6 |
| 80 | 23 | -45 | -60 | -50 | -37 | 5 |
| Treatment (Daily Dosage) | N | Total‑C | LDL‑C | Apo B | TG | HDL‑C |
| Trial 1 | ||||||
| LIPITOR 10 mg | 707 | -27 Significantly different from lovastatin, ANCOVA, p ≤0.05 | -36 | -28 | -17 | +7 |
| Lovastatin 20 mg | 191 | -19 | -27 | -20 | -6 | +7 |
| 95% CI for Diff A negative value for the 95% CI for the difference between treatments favors LIPITOR for all except HDL-C, for which a positive value favors LIPITOR. If the range does not include 0, this indicates a statistically significant difference. | -9.2, -6.5 | -10.7, -7.1 | -10.0, -6.5 | -15.2, -7.1 | -1.7, 2.0 | |
| Trial 2 | ||||||
| LIPITOR 10 mg | 222 | -25 Significantly different from pravastatin, ANCOVA, p ≤0.05 | -35 | -27 | -17 | +6 |
| Pravastatin 20 mg | 77 | -17 | -23 | -17 | -9 | +8 |
| 95% CI for Diff | -10.8, -6.1 | -14.5, -8.2 | -13.4, -7.4 | -14.1, -0.7 | -4.9, 1.6 | |
| Trial 3 | ||||||
| LIPITOR 10 mg | 132 | -29 Significantly different from simvastatin, ANCOVA, p ≤0.05 | -37 | -34 | -23 | +7 |
| Simvastatin 10 mg | 45 | -24 | -30 | -30 | -15 | +7 |
| 95% CI for Diff | -8.7, -2.7 | -10.1, -2.6 | -8.0, -1.1 | -15.1, -0.7 | -4.3, 3.9 |
| Placebo (N=12) | LIPITOR 10 mg (N=37) | LIPITOR 20 mg (N=13) | LIPITOR 80 mg (N=14) | |
| TG | -12.4 (-36.6, 82.7) | -41.0 (-76.2, 49.4) | -38.7 (-62.7, 29.5) | -51.8 (-82.8, 41.3) |
| Total-C | -2.3 (-15.5, 24.4) | -28.2 (-44.9, -6.8) | -34.9 (-49.6, -15.2) | -44.4 (-63.5, -3.8) |
| LDL-C | 3.6 (-31.3, 31.6) | -26.5 (-57.7, 9.8) | -30.4 (-53.9, 0.3) | -40.5 (-60.6, -13.8) |
| HDL-C | 3.8 (-18.6, 13.4) | 13.8 (-9.7, 61.5) | 11.0 (-3.2, 25.2) | 7.5 (-10.8, 37.2) |
| non-HDL-C | -2.8 (-17.6, 30.0) | -33.0 (-52.1, -13.3) | -42.7 (-53.7, -17.4) | -51.5 (-72.9, -4.3) |
| Median % Change (min, max) | |||
| Median (min, max) at Baseline (mg/dL) | LIPITOR 10 mg | LIPITOR 80 mg | |
| Total-C | 442 (225, 1320) | -37 (-85, 17) | -58 (-90, -31) |
| TG | 678 (273, 5990) | -39 (-92, -8) | -53 (-95, -30) |
| IDL-C + VLDL-C | 215 (111, 613) | -32 (-76, 9) | -63 (-90, -8) |
| non-HDL-C | 411 (218, 1272) | -43 (-87, -19) | -64 (-92, -36) |
| DOSAGE | N | Total-C | LDL-C | HDL-C | TG | Apolipoprotein B |
| Placebo | 47 | -1.5 | -0.4 | -1.9 | 1.0 | 0.7 |
| LIPITOR | 140 | -31.4 | -39.6 | 2.8 | -12.0 | -34.0 |
Drug information sourced from the FDA. This content is for informational purposes only and does not constitute medical advice. Consult a healthcare professional before making any medication decisions.
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