Metal – Metal Interactions in Biological System: A Competitive Approach. Review

Lulzim Zeneli
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引用次数: 1

Abstract

The increased availability of metals in biological environments, due to human intervention in the last century, raised concerns on the effects that metals might have on living organisms. Consequently, the toxicology of metals and bioinorganic chemistry has emerged as very active in this field of metals research. Different chemical forms can influence metal toxicokinetics and toxicodynamics and should be considered to improve human health risk assessment. Factors that influence metal speciation include: carrier-mediated processes for specific metal species; valence state; particle size; the nature of metal binding ligands; whether the metal is an organic versus inorganic species and biotransformation of metal species. The recent studies of the co-ordination chemistry of metal ions in biological systems (mostly X-ray crystallographic data) show the potential grouping metal ions according to their binding preferences (i.e. whether they seek out 0-, N- or S-containing ligands), on the other hand, the scientific results have shown us for the possibility of metal-metal interaction in biological systems despite their level of concentration. This review provides a compilation of research done on metal - metal interaction in biological system.
生物系统中的金属-金属相互作用:一种竞争性方法。审查
由于上个世纪人类的干预,金属在生物环境中的可用性增加,引起了人们对金属可能对生物体产生的影响的关注。因此,金属毒理学和生物无机化学在这一金属研究领域中十分活跃。不同的化学形式可影响金属的毒性动力学和毒性动力学,应加以考虑,以改善人类健康风险评估。影响金属形态形成的因素包括:特定金属形态的载体介导过程;价态;颗粒大小;金属结合配体的性质;金属是有机的还是无机的以及金属的生物转化。最近对生物系统中金属离子配位化学的研究(主要是x射线晶体学数据)表明,根据它们的结合偏好(即它们是否寻找含0、N或s的配体),金属离子可能会分组,另一方面,科学结果向我们展示了生物系统中金属-金属相互作用的可能性,尽管它们的浓度水平不同。本文综述了生物系统中金属-金属相互作用的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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