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Interactions of platinum metals and their complexes in biological systems.

机译:铂金属及其络合物在生物系统中的相互作用。

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摘要

Platinum-metal oxidation catalysts are to be introduced in exhaust systems of many 1975 model-year automobiles in the U.S. to meet Clean Air Act standards. Small quantities of finely divided catalyst have been found issuing from prototype systems; platinum and palladium compounds may be found also. Although platinum exhibits a remarkable resistance to oxidation and chemical attack, it reacts chemically under some conditions producing coordination complex compounds. Palladium reacts more readily than platinum. Some platinum-metal complexes interact with biological systems as bacteriostatic, bacteriocidal, viricidal, and immunosuppressive agents. Workers chronically exposed to platinum complexes often develop asthma-like respiratory distress and skin reactions called platinosis. Platinum complexes used alone and in combination therapy with other drugs have recently emerged as effective agents in cancer chemotherapy. Understanding toxic and favorable interactions of metal species with living organisms requires basic information on quantities and chemical characteristics of complexes at trace concentrations in biological materials. Some basic chemical kinetic and thermodynamic data are presented to characterize the chemical behavior of the complex cis-[Pt(NH3)2Cl2] used therapeutically. A brief discussion of platinum at manogram levels in biological tissue is discussed.
机译:铂金属氧化催化剂将被引入美国许多1975年型号汽车的排气系统中,以符合《清洁空气法》标准。从原型系统中发现了少量的细分催化剂。还可以发现铂和钯化合物。尽管铂具有出色的抗氧化和化学侵蚀性能,但在某些条件下,它会发生化学反应,生成配位化合物。钯比铂更容易反应。一些铂金属配合物与生物系统相互作用,例如抑菌剂,杀菌剂,杀病毒剂和免疫抑制剂。长期与铂配合物接触的工人经常出现类似哮喘的呼吸窘迫和皮肤反应,称为白化病。单独使用或与其他药物联合治疗的铂络合物最近已成为癌症化疗的有效药物。要了解金属物种与活生物体之间的毒性和有利相互作用,需要有关生物材料中痕量浓度的配合物的数量和化学特性的基本信息。介绍了一些基本的化学动力学和热力学数据,以表征治疗中使用的复杂顺式[[Pt(NH3)2Cl2]]的化学行为。讨论了在人体组织中铂在人体图水平上的简短讨论。

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