Pharmacokinetics of aspirin: evaluating shortcomings in the literature.

Jacobus Lukas Visagie, Gabriel Sanjo Aruwajoye, Rencia van der Sluis
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Abstract

Introduction: Aspirin is known for its therapeutic benefits in preventing strokes and relieving pain. However, it is toxic to some individuals, and the biological mechanisms causing toxicity are unknown. Limited literature is available on the role of glycine conjugation as the principal pathway in aspirin detoxification. Previous studies have quantified this two-step enzyme reaction as a singular enzymatic process. Consequently, the individual contributions of these enzymes to the kinetics remain unclear.

Areas covered: This review summarized the available information on the pharmacokinetics and detoxification of aspirin by the glycine conjugation pathway. Literature searches were conducted using Google Scholar and the academic journal databases accessible through the North-West University Library. Furthermore, the factors affecting interindividual variation in aspirin metabolism and what is known regarding aspirin toxicity were discussed.

Expert opinion: The greatest drawback in understanding the pharmacokinetics of aspirin is the limited information available on the substrate preference of the xenobiotic ligase (ACSM) responsible for activating salicylate to salicyl-CoA. Furthermore, previous pharmacokinetic studies did not consider the contribution of other substrates from the diet or genetic variants, to the detoxification rate of glycine conjugation. Impaired glycine conjugation might contribute to adverse health effects seen in Reye's syndrome and cancer.

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阿司匹林的药代动力学:评估文献中的不足之处。
简介众所周知,阿司匹林具有预防中风和缓解疼痛的疗效。然而,阿司匹林对某些人具有毒性,而导致毒性的生物机制尚不清楚。关于甘氨酸共轭作为阿司匹林解毒的主要途径的文献有限。以往的研究将这种两步酶反应量化为一个单一的酶反应过程。因此,这些酶对动力学的单独贡献仍不清楚:本综述总结了有关阿司匹林通过甘氨酸共轭途径进行药代动力学和解毒的现有信息。通过谷歌学术和西北大学图书馆的学术期刊数据库进行了文献检索。此外,还讨论了影响阿司匹林代谢个体差异的因素以及目前已知的阿司匹林毒性:在了解阿司匹林的药代动力学方面,最大的缺陷是关于负责将水杨酸活化为水杨酰-CoA的异生物连接酶(ACSM)底物偏好的信息有限。此外,以往的药代动力学研究并未考虑饮食中的其他底物或基因变异对甘氨酸共轭解毒率的影响。甘氨酸共轭作用受损可能会导致雷氏综合征和癌症等不良健康影响。
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