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抗癌药物达沙替尼和GDC-0941在犬类不同胃部条件下的药代动力学及吸收情况——用盐酸甜菜碱逆转胃内pH值升高的影响

Pharmacokinetics and absorption of the anticancer agents dasatinib and GDC-0941 under various gastric conditions in dogs--reversing the effect of elevated gastric pH with betaine HCl.

作者信息

Pang Jodie, Dalziel Gena, Dean Brian, Ware Joseph A, Salphati Laurent

机构信息

Department of Drug Metabolism and Pharmacokinetics, ‡Department of Small Molecule Pharmaceutical Sciences, and §Department of Small Molecule Clinical Pharmacology, Genentech, Inc. , South San Francisco, California 94080, United States.

出版信息

Mol Pharm. 2013 Nov 4;10(11):4024-31. doi: 10.1021/mp400356m. Epub 2013 Sep 11.

Abstract

Changes in gastric pH can impact the dissolution and absorption of compounds presenting pH-dependent solubility. We assessed, in dogs, the effects of gastric pH-modifying agents on the oral absorption of two weakly basic anticancer drugs, dasatinib and GDC-0941. We also tested whether drug-induced hypochlorhydria could be temporarily mitigated using betaine HCl. Pretreatments with pentagastrin, famotidine, betaine HCl, or combinations of famotidine and betaine HCl were administered orally to dogs prior to drug dosing. The gastric pH was measured under each condition for up to 7 h, and the exposure of the compounds tested was calculated. The average gastric pH in fasted dogs ranged from 1.45 to 3.03. Pentagastrin or betaine HCl treatments lowered the pH and reduced its variability between dogs compared to control animals. In contrast, famotidine treatment maintained gastric pH at values close to 7 for up to 5 h, while betaine HCl transiently reduced the pH to approximately 2 in the famotidine-treated dogs. Famotidine pretreatment lowered GDC-0941 exposure by 5-fold, and decreased dasatinib measurable concentrations 30-fold, compared to the pentagastrin-treated dogs. Betaine HCl restored GDC-0941 AUC in famotidine-treated dogs to levels achieved in control animals, and increased dasatinib AUC to 1.5-fold that measured in control dogs. The results confirmed the negative impact of acid-reducing agents on the absorption of weakly basic drugs. They also suggested that betaine HCl coadministration may be a viable strategy in humans treated with acid-reducing agents in order to temporarily reduce gastric pH and restore drug exposure.

摘要

胃内pH值的变化会影响具有pH依赖性溶解度的化合物的溶解和吸收。我们在犬类中评估了胃pH调节剂对两种弱碱性抗癌药物达沙替尼和GDC-0941口服吸收的影响。我们还测试了使用盐酸甜菜碱是否可以暂时缓解药物引起的胃酸过少。在给药前,给犬口服五肽胃泌素、法莫替丁、盐酸甜菜碱或法莫替丁与盐酸甜菜碱的组合进行预处理。在每种条件下测量胃pH值长达7小时,并计算所测试化合物的暴露量。禁食犬的平均胃pH值在1.45至3.03之间。与对照动物相比,五肽胃泌素或盐酸甜菜碱处理降低了pH值并减少了犬之间的变异性。相比之下,法莫替丁处理可使胃pH值在接近7的水平维持长达5小时,而在法莫替丁处理的犬中,盐酸甜菜碱可将pH值暂时降低至约2。与五肽胃泌素处理的犬相比,法莫替丁预处理使GDC-0941的暴露量降低了5倍,使达沙替尼的可测量浓度降低了30倍。盐酸甜菜碱使法莫替丁处理的犬的GDC-0941曲线下面积恢复到对照动物的水平,并使达沙替尼的曲线下面积增加至对照犬测量值的1.5倍。结果证实了胃酸降低剂对弱碱性药物吸收的负面影响。它们还表明,在接受胃酸降低剂治疗的人类中,联合使用盐酸甜菜碱可能是一种可行的策略,以暂时降低胃pH值并恢复药物暴露。

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