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物理化学性质对酰基葡萄糖醛酸苷反应活性和稳定性的影响

The influence of physicochemical properties on the reactivity and stability of acyl glucuronides .

作者信息

Camilleri Patrick, Buch Akshay, Soldo Brandi, Hutt Andrew J

机构信息

a Bio-Chemical Solutions , Stevenage , UK.

b Aerpio Therapeutics, Inc. , Cincinnati , OH , USA , and.

出版信息

Xenobiotica. 2018 Sep;48(9):958-972. doi: 10.1080/00498254.2017.1384967. Epub 2017 Oct 13.

Abstract

1. Formation of 1-O-acyl-β-d-glucuronide conjugates is a significant pathway in the metabolism of drugs containing a carboxylic acid group. The formation of acyl glucuronides results in an increase in both the aqueous solubility and molecular mass of the conjugate in comparison to the parent drug and thus facilitates excretion in both urine and bile. 2. Acyl glucuronides are effectively esters, which undergo first order decomposition by both hydrolysis and the intra-migration of the acyl group around the glucuronide ring to yield 2-, 3- and 4-O-glucuronic acid esters which, unlike the metabolically formed 1-O-acyl-β-d-glucuronides, are not substrates for β-glucuronidase. The first order degradation half-life is therefore a composite value of these two reactions and a useful indicator of chemical reactivity and potential toxicity. 3. Intra-molecular migration is expected to be the predominant pathway due to entropic considerations. 4. Such conjugates, together with their isomeric ester derivatives, react with nucleophilic sites on proteins and small endogenous molecules, such as glutathione, which potentially contributes to the observed toxicity and adverse drug reactions associated with some drugs. 5. Examination of the stability of the 1-O-acyl-β-d-glucuronides of aryl acetic acid, α-carbon substituted aryl acetic acid, aliphatic and aromatic acids, as determined by their first order degradation half-lives, indicates the significance of electronic and steric features that contribute to conjugate stability under physiological conditions. 6. Examination of the of the electronic properties of the carbonyl carbon atom in acyl glucuronides, as measured by the pKa of the parent acid, together with the steric substituents about the acyl carbonyl provides insight into the reactivity of these conjugates. 7. The investigations reported herein on a large number of 1-O-acyl-β-d-glucuronides has allowed rationalisation of their physicochemical properties in relation to the structure of the parent drug and has the potential to contribute to the design of carboxylic acid containing drug molecules with increased stability of a major metabolite with potential reduction in toxicity and adverse drug reactions.

摘要
  1. 1-O-酰基-β-D-葡萄糖醛酸共轭物的形成是含羧基药物代谢的一条重要途径。与母体药物相比,酰基葡萄糖醛酸的形成导致共轭物的水溶性和分子量增加,从而有利于其经尿液和胆汁排泄。2. 酰基葡萄糖醛酸实际上是酯类,它们通过水解以及酰基在葡萄糖醛酸环周围的分子内迁移进行一级分解,生成2-、3-和4-O-葡萄糖醛酸酯,与代谢形成的1-O-酰基-β-D-葡萄糖醛酸不同,这些酯不是β-葡萄糖醛酸酶的底物。因此,一级降解半衰期是这两个反应的综合值,是化学反应性和潜在毒性的有用指标。3. 出于熵的考虑,分子内迁移预计是主要途径。4. 这类共轭物及其异构酯衍生物会与蛋白质和谷胱甘肽等内源性小分子上的亲核位点发生反应,这可能是某些药物产生毒性和不良药物反应的原因。5. 通过一级降解半衰期测定芳基乙酸、α-碳取代芳基乙酸、脂肪族和芳香族酸的1-O-酰基-β-D-葡萄糖醛酸的稳定性,结果表明电子和空间特征对生理条件下共轭物稳定性的重要性。6. 通过母体酸的pKa测定酰基葡萄糖醛酸中羰基碳原子的电子性质,并结合酰基羰基周围的空间取代基,有助于深入了解这些共轭物的反应性。7. 本文报道的对大量1-O-酰基-β-D-葡萄糖醛酸的研究,使人们能够根据母体药物的结构对其物理化学性质进行合理分析,并有可能有助于设计含羧酸的药物分子,使主要代谢物的稳定性增加,潜在地降低毒性和不良药物反应。

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