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不溶性镍化合物的化学和生物反应性以及镍的生物无机化学。

Chemical and biological reactivity of insoluble nickel compounds and the bioinorganic chemistry of nickel.

作者信息

Nieboer E, Maxwell R I, Stafford A R

出版信息

IARC Sci Publ. 1984(53):439-58.

PMID:6398288
Abstract

The basic concepts describing the surface properties of binary metal compounds at solid-solution interfaces are reviewed. For hydrated surfaces, the development of surface charge is dependent on pH and the extent of specific adsorption of cations and anions. It is concluded from data on haemolysis of human erythrocytes, and surface adsorption of proteins and cations that surface passivity (external smoothness/crystallinity, low surface charge) combined with low to moderate body fluid solubility correlate with published carcinogenicities. In a review of the coordination chemistry of Ni2+, the following chemical properties are identified as determinants of biological reactivity: size, stereochemistry, binding preferences, complex stability, kinetic lability, and redox properties. New developments in the association of Ni2+ with proteins suggest: a role for the Ni3+/Ni2+ redox couple in bacterial proteins; the involvement of the primary copper/nickel binding site of human serum albumin in antigen recognition by antibodies with nickel-related specificity; and that Ni2+ can act as an antagonist of essential metal ions. It is concluded that there is considerable scope for work elucidating the surface properties of binary nickel compounds, and that the in vivo displacement of Mg2+, Ca2+, Zn2+ and perhaps other ions by Ni2+ constitutes a useful mechanistic concept in nickel toxicology.

摘要

本文综述了描述二元金属化合物在固溶体界面表面性质的基本概念。对于水合表面,表面电荷的产生取决于pH值以及阳离子和阴离子的特异性吸附程度。从人体红细胞溶血数据、蛋白质和阳离子的表面吸附数据得出结论,表面惰性(外部光滑度/结晶度、低表面电荷)与低至中等的体液溶解度相结合与已公布的致癌性相关。在对Ni2+配位化学的综述中,以下化学性质被确定为生物反应性的决定因素:大小、立体化学、结合偏好、配合物稳定性、动力学活性和氧化还原性质。Ni2+与蛋白质结合的新进展表明:Ni3+/Ni2+氧化还原对在细菌蛋白质中起作用;人血清白蛋白的主要铜/镍结合位点参与具有镍相关特异性的抗体的抗原识别;并且Ni2+可以作为必需金属离子的拮抗剂。得出的结论是,在阐明二元镍化合物的表面性质方面有相当大的工作空间,并且Ni2+在体内对Mg2+、Ca2+、Zn2+以及可能其他离子的置换构成了镍毒理学中一个有用的机制概念。

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