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Characterization of Gastrointestinal Drug Absorption in Cynomolgus Monkeys

药理学 药代动力学 生物利用度 普萘洛尔 小肠 多药耐药蛋白2 化学 流出 速尿 对乙酰氨基酚 吸收(声学) 体内 口服 肠道通透性 胃肠道 药物代谢 首过效应 药品 运输机 内科学 生物 内分泌学 医学 生物化学 ATP结合盒运输机 声学 基因 生物技术 有机化学 物理
作者
Masayuki Takahashi,Takuo Washio,Norio Suzuki,Katsuhiro Igeta,Yoshimine Fujii,Masahiro Hayashi,Yoshiyuki Shirasaka,Shinji Yamashita
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:5 (2): 340-348 被引量:37
标识
DOI:10.1021/mp700095p
摘要

Possible factors of species differences in gastrointestinal drug absorption between cynomolgus monkeys and humans were examined using several commercial drugs. Oral bioavailability (BA) of acetaminophen, furosemide, and propranolol in cynomolgus monkeys was significantly lower than that in humans. From the pharmacokinetic analysis, these drugs were found to show the low fraction absorbed into portal vein (FaFg), suggesting that the low BA in cynomolgus monkeys was attributed mainly to the gastrointestinal absorption processes. The gastric emptying rate (GER) calculated from plasma concentration profiles after oral administration of acetaminophen in cynomolgus monkeys was similar in humans. The gastrointestinal transit time (GITT) in cynomolgus monkeys was only slightly shorter than that in humans. On the other hand, it was demonstrated that the apparent intestinal permeability (Papp) of five drugs to cynomolgus monkey intestine was lower than that to rat intestine; especially propranolol and furosemide showed the remarkably low Papp. The expression levels of mRNAs of efflux transporters analyzed by real-time RT-PCR indicated that mRNA expression levels of MDR1, MRP2, and BCRP in monkey intestine were significantly higher than those in human intestine. This result suggested that low oral absorption of furosemide in cynomolgus monkeys was attributed to the high activities of efflux transporters in its intestinal membrane. Results of in vivo PK analysis clearly showed that FaFg values of propranolol and acetaminophen in cynomolgus monkeys were markedly lower than those in humans. Since propranolol and acetaminophen were the drug with high membrane permeability, it was considered that the high first-pass metabolism in the enterocytes was a main factor of their low FaFg in cynomolgus monkeys. In conclusion, it was demonstrated that the high activities of efflux transporters and/or metabolizing enzymes in the intestinal membrane are possible factors to cause poor oral absorption of drugs in cynomolgus monkeys.
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