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铝的毒代动力学。

Aluminum toxicokinetics.

作者信息

Exley C, Burgess E, Day J P, Jeffery E H, Melethil S, Yokel R A

机构信息

Department of Chemistry, Keele University, Staffordshire, United Kingdom.

出版信息

J Toxicol Environ Health. 1996 Aug 30;48(6):569-84. doi: 10.1080/009841096161078.

Abstract

In this study of the toxicokinetics of aluminum we have examined some of the fundamental issues that currently define our understanding of the toxicology of aluminum in humans. There is a vast literature on this subject, and it was not our aim to review this literature but to use it to develop our understanding of the toxicokinetics of aluminum and to identify critical and unresolved issues related to its toxicity. In undertaking this task we have chosen to define the term toxicokinetics to encompass those factors that influence both the lability of aluminum in a body and the sites at which aluminum is known to accumulate, with or without consequent biological effect. We have approached our objective from the classical pharmacological approach of ADME: the absorption, distribution, metabolism, and excretion of aluminum. This approach was successful in identifying several key deficits in our understanding of aluminum toxicokinetics. For example, we need to determine the mechanisms by which aluminum crosses epithelia, such as those of the gastrointestinal tract and the central nervous system, and how these mechanisms influence both the subsequent transport and fate of the absorbed aluminum and the concomitant nature and severity of the biological response to the accumulation of aluminum. Our hope in highlighting these unresolved issues (summarized in Table 1) is that they will be addressed in future research.

摘要

在这项关于铝的毒代动力学研究中,我们探讨了一些当前界定我们对铝在人体中毒理学理解的基本问题。关于这个主题有大量文献,我们的目的不是回顾这些文献,而是利用它们来加深我们对铝毒代动力学的理解,并确定与其毒性相关的关键且未解决的问题。在开展这项任务时,我们选择将毒代动力学定义为涵盖那些影响体内铝的活性以及已知铝积累部位的因素,无论是否伴有生物学效应。我们从药物代谢动力学的经典方法即ADME(铝的吸收、分布、代谢和排泄)来实现我们的目标。这种方法成功地确定了我们在铝毒代动力学理解方面的几个关键不足。例如,我们需要确定铝穿过上皮组织(如胃肠道和中枢神经系统的上皮组织)的机制,以及这些机制如何影响吸收的铝的后续转运和归宿,以及对铝积累的生物学反应的性质和严重程度。我们强调这些未解决问题(总结在表1中)的希望是,它们将在未来的研究中得到解决。

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