Suppr超能文献

镉的毒代动力学与生物化学,特别强调金属硫蛋白的作用。

Toxicokinetics and biochemistry of cadmium with special emphasis on the role of metallothionein.

作者信息

Jin T, Lu J, Nordberg M

机构信息

Department of Occupational and Environmental Medicine, Umea University, Sweden.

出版信息

Neurotoxicology. 1998 Aug-Oct;19(4-5):529-35.

PMID:9745907
Abstract

Cadmium is a toxic metal with extremely long biological half-time of 15-20 years in humans. It has for decades been known that cadmium exposure can cause a variety of adverse health effects, among which kidney dysfunction, lung diseases, disturbed calcium metabolism and bone effects are most prominent. Following long term exposure the kidney is the critical organ. Cadmium and its compounds give rise to lung cancer after inhalation and have been classified as human carcinogens. Metallothionein (MT) is a low-molecular -weight protein, 6500Da with high cysteine content and high metal affinity, which plays a major role in the kinetics and metabolism of cadmium. The balance between CdMT and non-bound Cd in renal tissue has been shown to be of crucial importance for expression of toxicity. The most well studied metallothioneins are metallothioneins I and II with their isoforms which are expressed in almost all mammalian tissues. Metallothionein III is expressed in brain and is rich in zinc. Since the blood-brain barrier keeps Cd outside the CNS, reported neurotoxic effects of Cd during development are likely to be secondary to an interference of Cd with Zn-metabolism and not a direct effect of Cd on brain cells. It is therefore of importance to investigate whether neurotoxicity induced by cadmium is related to mechanisms involving MT III in brain.

摘要

镉是一种有毒金属,在人体中的生物半衰期极长,为15至20年。几十年来,人们已知接触镉会导致多种不良健康影响,其中肾功能障碍、肺部疾病、钙代谢紊乱和骨骼影响最为突出。长期接触后,肾脏是关键器官。镉及其化合物吸入后会引发肺癌,已被列为人类致癌物。金属硫蛋白(MT)是一种低分子量蛋白质,分子量为6500Da,半胱氨酸含量高,金属亲和力高,在镉的动力学和代谢中起主要作用。肾组织中镉金属硫蛋白(CdMT)与未结合镉之间的平衡已被证明对毒性表达至关重要。研究最充分的金属硫蛋白是金属硫蛋白I和II及其异构体,它们在几乎所有哺乳动物组织中都有表达。金属硫蛋白III在大脑中表达,富含锌。由于血脑屏障使镉无法进入中枢神经系统,因此发育过程中镉的神经毒性作用可能是镉干扰锌代谢的继发效应,而非镉对脑细胞的直接作用。因此,研究镉诱导的神经毒性是否与大脑中涉及金属硫蛋白III的机制有关具有重要意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验