Identification of the Rate-Determining Process in the Hepatic Clearance of Atorvastatin in a Clinical Cassette Microdosing Study
Kazuya Maeda, Yasumasa Ikeda, Tomoe Fujita, Kenta Yoshida, Yasu‐taka Azuma, Yasuhisa Haruyama, Naoe Yamane, Yoshito Kumagai, Yuichi Sugiyama
Clinical Pharmacology & Therapeutics August 10, 2011 DOI: 10.1038/clpt.2011.142 via OpenAlex
Summary
AI-generated from the abstractAtorvastatin, a cholesterol-lowering drug, is cleared from the body by being taken up into the liver via organic anion transporting polypeptides (OATPs) and then broken down by the enzyme CYP3A4. A clinical study using a microdose cocktail given to eight healthy volunteers showed that blocking OATPs with rifampicin increased atorvastatin's exposure 12-fold, while blocking CYP3A4 with itraconazole had no effect. This demonstrates that hepatic uptake via OATPs, not metabolism by CYP3A4, is the dominant process for eliminating atorvastatin at a subtherapeutic dose.
Study at a glance
| Characteristics | Clinical microdose study Peer reviewed |
|---|---|
| Sample size | 8 |
| Population | Healthy volunteers |
| Interventions | rifampicin itraconazole |
| Dose | 600 mg rifampicin oral, 200 mg itraconazole intravenous |
| Keywords | Atorvastatin Pharmacology Microdose Cyp3a4 Pharmacokinetics |
| Citations | 207 |
| Key finding | Hepatic uptake via OATPs is the dominant contributor to atorvastatin's elimination at a microdose, as OATP inhibition increased exposure 12-fold while CYP3A4 inhibition had no effect. |
Abstract
Clearance of atorvastatin occurs through hepatic uptake by organic anion transporting polypeptides (OATPs) and subsequent metabolism by cytochrome P450 (CYP) 3A4. To demonstrate the relative importance of OATPs and CYP3A4 in the hepatic elimination of atorvastatin in vivo, a clinical cassette microdose study was performed. A cocktail consisting of a microdose of atorvastatin along with probe substrates for OATPs (pravastatin) and CYP3A4 (midazolam) was orally administered to eight healthy volunteers. The pharmacokinetics of this cocktail was observed at baseline, after an oral dose of 600 mg rifampicin (an inhibitor of OATPs), and after an intravenous dose of 200 mg itraconazole (a CYP3A4 inhibitor). Rifampicin increased the pravastatin dose-normalized area under the plasma concentration-time curve (AUC) (4.6-fold), and itraconazole significantly increased the midazolam dose-normalized AUC (1.7-fold). The atorvastatin dose-normalized AUC increased 12-fold when coadministered with rifampicin but did not change when coadministered with itraconazole. These results indicate that hepatic uptake via OATPs makes the dominant contribution to the hepatic elimination of atorvastatin at a subtherapeutic microdose.