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大鼠和小鼠对邻苯二甲酸二(2-乙基己基)酯的吸收、代谢及排泄

Absorption, metabolism, and excretion of di(2-ethylhexyl) phthalate by rats and mice.

作者信息

Albro P W

出版信息

Environ Health Perspect. 1986 Mar;65:293-8. doi: 10.1289/ehp.8665293.

Abstract

There is convincing evidence in the literature that most of the adverse biological effects of phthalate diesters are actually effects of metabolites rather than of the parent compounds. If so, the dramatic species differences in endpoint metabolic profiles make it essential that metabolism of phthalates be understood in detail, including the factors that may alter the metabolism. A metabolic pathway for phthalates having saturated alkyl groups has been postulated based on identification of metabolites produced in vivo and excreted in urine. The first few steps in the postulated pathway have been confirmed in vitro using enzymatically active preparations from rats and mice; some details of the nature of these early steps have been learned. Although some information concerning later steps is available, much remains to be learned in this area. Species differences are postulated to involve kinetics of several biochemical and physiological events acting in concert or competition. Among these interacting factors are competition of at least three enzymes for phthalate monoesters as substrate, relative kidney clearance rates for different metabolites, relative Km values of oxidative enzymes for the same precursors in different species, and relative equilibria between glucuronide formation and hydrolysis. Essential information that must be obtained in the future includes which metabolites play a causal role in which biological effects, and what factors (age, diet, state of health, etc.) can modify the metabolism of phthalate esters and in what way.

摘要

文献中有令人信服的证据表明,邻苯二甲酸二酯的大多数不良生物学效应实际上是其代谢产物而非母体化合物的效应。倘若如此,由于终点代谢谱存在显著的物种差异,详细了解邻苯二甲酸酯的代谢情况,包括可能改变代谢的因素就显得至关重要。基于对体内产生并经尿液排泄的代谢产物的鉴定,已推测出具有饱和烷基的邻苯二甲酸酯的代谢途径。推测途径的前几步已在体外使用大鼠和小鼠的酶活性制剂得到证实;这些早期步骤的一些细节也已了解。尽管有关后续步骤的一些信息已有,但该领域仍有许多有待了解之处。据推测,物种差异涉及协同作用或相互竞争的几种生化和生理事件的动力学。这些相互作用的因素包括至少三种酶对邻苯二甲酸单酯作为底物的竞争、不同代谢产物的相对肾脏清除率、不同物种中氧化酶对相同前体的相对Km值,以及葡萄糖醛酸苷形成与水解之间的相对平衡。未来必须获取的重要信息包括哪些代谢产物在哪些生物学效应中起因果作用,以及哪些因素(年龄、饮食、健康状况等)可以改变邻苯二甲酸酯的代谢以及以何种方式改变。

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