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羧酸酯酶抑制剂双对硝基苯磷酸酯(BNPP)在测定一种水解不稳定的酰胺衍生物及TGR5受体激动剂的血浆游离分数中的应用。

Utility of the carboxylesterase inhibitor bis-para-nitrophenylphosphate (BNPP) in the plasma unbound fraction determination for a hydrolytically unstable amide derivative and agonist of the TGR5 receptor.

作者信息

Eng H, Niosi M, McDonald T S, Wolford A, Chen Y, Simila S T M, Bauman J N, Warmus J, Kalgutkar A S

机构信息

Pharmacokinetics, Dynamics and Metabolism, Groton, CT, USA.

出版信息

Xenobiotica. 2010 Jun;40(6):369-80. doi: 10.3109/00498251003706598.

Abstract

The potent, functional agonist of the bile acid Takeda G-protein-coupled receptor 5 (TGR5), (S)-1-(6-fluoro-2-methyl-3,4-dihydroquinolin-1(2H)-yl)-2-(isoquinolin-5-yloxy)ethanone (3), represents a useful tool to probe in vivo TGR5 pharmacology. Rapid degradation of 3 in both rat and mouse plasma, however, hindered the conduct of in vivo pharmacokinetic/pharmacodynamic investigations (including plasma-free fraction (f(u plasma)) determination) in rodent models of pharmacology. Studies were therefore initiated to understand the biochemical basis for plasma instability so that appropriate methodology could be implemented in in vivo pharmacology studies to prevent the breakdown of 3. Compound 3 underwent amide bond cleavage in both rat and mouse plasma with half-lives (T(1/2)) of 39 + or - 7 and 9.9 + or - 0.1 min. bis(p-nitrophenyl) phosphate (BNPP), a specific inhibitor of carboxylesterases, was found to inhibit hydrolytic cleavage in a time- and concentration-dependent manner, which suggested the involvement of carboxylesterases in the metabolism of 3. In contrast with the findings in rodents, 3 was resistant to hydrolytic cleavage in both dog and human plasma. The instability of 3 was also observed in rat and mouse liver microsomes. beta-Nicotinamide adenine dinucleotide phosphate, reduced form (NADPH)-dependent metabolism of 3 occurred more rapidly (T(1/2) approximately 2.22-6.4 min) compared with the metabolic component observed in the absence of the co-factor (T(1/2) approximately 89-130 min). Oxidative metabolism dominated the NADPH-dependent decline of 3, whereas NADPH-independent metabolism of 3 proceeded via simple amide bond hydrolysis. Compound 3 was highly bound (approximately 95%) to both dog and human plasmas. Rat and mouse plasma, pre-treated with BNPP to inhibit carboxylesterases activity, were used to determine the f(u plasma) of 3. A BNPP concentration of 500 microM was determined to be optimal for these studies. Higher BNPP concentrations (1000 microM) appeared to displace 3 from its plasma protein-binding sites in preclinical species and human. Under the conditions of carboxylesterases-inhibited rat and mouse plasma, the level of protein binding displayed by 3 was similar to those observed in dog and human. In conclusion, a novel system has been devised to measure f(u plasma) for a plasma-labile compound. The BNPP methodology can be potentially applied to stabilize hydrolytic cleavage of structurally diverse carboxylesterase substrates in the plasma (and other tissue), thereby allowing the characterization of pharmacology studies on plasma-labile compounds if and when they emerge as hits in exploratory drug-discovery programmes.

摘要

胆汁酸武田G蛋白偶联受体5(TGR5)的强效功能性激动剂(S)-1-(6-氟-2-甲基-3,4-二氢喹啉-1(2H)-基)-2-(异喹啉-5-基氧基)乙酮(3)是用于探究体内TGR5药理学的有用工具。然而,3在大鼠和小鼠血浆中均迅速降解,这阻碍了在啮齿动物药理学模型中进行体内药代动力学/药效学研究(包括测定血浆游离分数(f(u plasma)))。因此开展了研究以了解血浆不稳定性的生化基础,以便在体内药理学研究中实施适当的方法来防止3的分解。化合物3在大鼠和小鼠血浆中均发生酰胺键断裂,半衰期(T(1/2))分别为39±7分钟和9.9±0.1分钟。发现双(对硝基苯基)磷酸酯(BNPP),一种羧酸酯酶的特异性抑制剂,以时间和浓度依赖性方式抑制水解裂解,这表明羧酸酯酶参与了3的代谢。与在啮齿动物中的发现相反,3在犬和人血浆中对水解裂解具有抗性。在大鼠和小鼠肝微粒体中也观察到3的不稳定性。与在不存在辅因子的情况下观察到的代谢成分(T(1/2)约为89 - 130分钟)相比,3的β-烟酰胺腺嘌呤二核苷酸磷酸还原形式(NADPH)依赖性代谢发生得更快(T(1/2)约为2.22 - 6.4分钟)。氧化代谢主导了3的NADPH依赖性下降,而3的NADPH非依赖性代谢通过简单的酰胺键水解进行。化合物3与犬和人血浆的结合率都很高(约95%)。用BNPP预处理以抑制羧酸酯酶活性的大鼠和小鼠血浆用于测定3的f(u plasma)。已确定500 microM的BNPP浓度对这些研究是最佳的。更高的BNPP浓度(1000 microM)似乎会使3从临床前物种和人的血浆蛋白结合位点上被置换下来。在羧酸酯酶抑制的大鼠和小鼠血浆条件下,3所显示的蛋白结合水平与在犬和人中观察到的相似。总之,已设计出一种新系统来测量血浆不稳定化合物的f(u plasma)。BNPP方法有可能应用于稳定血浆(和其他组织)中结构多样的羧酸酯酶底物的水解裂解,从而在探索性药物发现计划中当血浆不稳定化合物作为活性物质出现时,能够对其药理学研究进行表征。

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