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Gold compounds for catalysis and metal-mediated transformations in biological systems

机译:用于催化和金属介导的生物系统转化的金色化合物

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摘要

One of the challenges of modern inorganic chemistry is translating the potential of metal catalysts to living systems to achieve controlled non-natural transformations. This field poses numerous issues associated with the metal compounds biocompatibility, stability, and reactivity in complex aqueous environment. Moreover, it should be noted that although referring to 'metal catalysis', turnover has not yet been fully demonstrated in most of the examples within living systems. Nevertheless, transition metal catalysts offer an opportunity of modulating bioprocesses through reactions that are complementary to enzymes. In this context, gold complexes, both coordination and organometallic, have emerged as promising tools for bio-orthogonal transformations, endowed with excellent reactivity and selectivity, compatibility within aqueous reaction medium, fast kinetics of ligand exchange reactions, and mild reaction conditions. Thus, a number of examples of gold-templated reactions in a biologically relevant context will be presented and discussed here in relation to their potential applications in biological and medicinal chemistry.
机译:现代无机化学的挑战之一是将金属催化剂的潜力转化为生物系统,以实现受控的非天然转化。该领域造成了与金属化合物生物相容性,稳定性和复合物环境中的反应性相关的许多问题。此外,应该指出的是,虽然参考“金属催化”,但在生活系统中的大多数例子中尚未完全证明周转。然而,过渡金属催化剂提供通过对酶互补的反应调节生物处理的机会。在这种情况下,Gold Compleases,双重复合物,协调和有机金属都是生物正交变换的有希望的工具,其具有优异的反应性和选择性,在水性反应介质中的相容性,配体交换反应的快速动力学,以及轻度的反应条件。因此,这里将在这里呈现和讨论生物学相关的上下文中的金模板反应中的许多实例,并讨论其在生物和药物化学中的潜在应用。

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