首页> 外文期刊>Organometallics >Bioorganometallic chemistry: Structural diversity of organometallic complexes with bioligands and molecular recognition studies of several supramolecular hosts with biomolecules, alkali-metal ions, and organometallic pharmaceuticals [Review]
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Bioorganometallic chemistry: Structural diversity of organometallic complexes with bioligands and molecular recognition studies of several supramolecular hosts with biomolecules, alkali-metal ions, and organometallic pharmaceuticals [Review]

机译:生物有机金属化学:具有生物配体的有机金属配合物的结构多样性以及几种具有生物分子,碱金属离子和有机金属药物的超分子主体的分子识别研究[综述]

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摘要

Bioorganometallic chemistry, a nascent area of organometallic chemistry, has recently provided significant advancements in structural diversity and molecular recognition studies. This review shows the various novel structures with bioligands of other colleagues, as well as those from our own studies. In addition, molecular recognition, the cornerstone of how biological systems operate, has now been extended to organometallic, supramolecular host molecules with biologically important guest compounds, including organometallic ionophores for selective recognition of alkali-metal ions. This host-guest molecular recognition chemistry with biologically important compounds occurs by noncovalent interactions, which encompass pi-pi, hydrophobic, and selective hydrogen bonding. The advent of organometallic pharmaceuticals has further provided unique molecular recognition/computer docking studies with hormone receptor sites that clearly delineate novel, noncovalent processes. The future looks extremely promising for bioorganometallic chemistry with regard to structural diversity and host-guest chemistry, including noncovalent interactions of organometallic pharmaceuticals with receptor site proteins to delineate mode of action. [References: 45]
机译:生物有机金属化学是有机金属化学的新兴领域,最近在结构多样性和分子识别研究方面取得了重大进展。这篇综述显示了具有其他同事生物配体的各种新颖结构,以及我们自己研究的结构。此外,分子识别是生物系统运作的基石,现已扩展到具有生物学重要客体化合物的有机金属超分子主体分子,包括用于选择性识别碱金属离子的有机金属离子载体。这种具有生物学上重要意义的化合物的主客体分子识别化学是通过非共价相互作用而发生的,其中包括pi-pi,疏水和选择性氢键。有机金属药物的出现进一步提供了独特的分子识别/计算机对接研究,其荷尔蒙受体位点清楚地描绘了新的非共价过程。对于生物有机金属化学而言,在结构多样性和客体化学方面,包括有机金属药物与受体位点蛋白的非共价相互作用,以描绘作用方式,未来看起来极为有前途。 [参考:45]

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