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自组装三维超分子配位络合物在生物医学应用中的前景

The Promise of Self-Assembled 3D Supramolecular Coordination Complexes for Biomedical Applications.

作者信息

Casini Angela, Woods Benjamin, Wenzel Margot

机构信息

School of Chemistry, Cardiff University , Main Building, Park Place, CF10 3AT Cardiff, United Kingdom.

出版信息

Inorg Chem. 2017 Dec 18;56(24):14715-14729. doi: 10.1021/acs.inorgchem.7b02599. Epub 2017 Nov 27.

DOI:10.1021/acs.inorgchem.7b02599
PMID:29172467
Abstract

In the supramolecular chemistry field, coordination-driven self-assembly has provided the basis for tremendous growth across many subdisciplines, spanning from fundamental investigations regarding the design and synthesis of new architectures to defining different practical applications. Within this framework, supramolecular coordination complexes (SCCs), defined as large chemical entities formed from smaller precursor building blocks of ionic metal nodes and organic multidentate ligands, resulting in intricate and well-defined supramolecular structures, hold great promise. Notably, interest in the construction of discrete 3D molecular architectures, such as those offered by SCCs, has experienced extraordinary progress because of their potential application as sensors, catalysts, probes, and containers and in basic host-guest chemistry. Despite numerous synthetic efforts and a number of inherent favorable properties, the field of 3D SCCs for biomedical applications is still in its infancy. This Viewpoint focuses on 3D SCCs, specifically metallacages and helicates, first briefly presenting the fundamentals in terms of the synthesis and characterization of their host-guest properties, followed by an overview of the possible biological applications with representative examples. Thus, emphasis will be given in particular to metallacages as drug delivery systems and to chiral helicates as DNA recognition domains. Overall, we will provide an update on the state-of-the-art literature and will define the challenges in this fascinating research area at the interface of different disciplines.

摘要

在超分子化学领域,配位驱动的自组装为许多子学科的巨大发展奠定了基础,涵盖从新结构设计与合成的基础研究到不同实际应用的界定。在此框架内,超分子配位复合物(SCCs),即由离子金属节点和有机多齿配体的较小前体构建单元形成的大型化学实体,可产生复杂且明确的超分子结构,具有巨大潜力。值得注意的是,由于离散三维分子结构(如SCCs所提供)在传感器、催化剂、探针和容器以及基础主客体化学中的潜在应用,对其构建的兴趣取得了非凡进展。尽管进行了大量合成努力且具有许多固有的有利性质,但用于生物医学应用的三维SCCs领域仍处于起步阶段。本观点聚焦于三维SCCs,特别是金属笼和螺旋配合物,首先简要介绍其主客体性质的合成与表征方面的基础知识,接着概述具有代表性实例的可能生物应用。因此,将特别强调作为药物递送系统的金属笼和作为DNA识别域的手性螺旋配合物。总体而言,我们将提供最新的文献综述,并界定这个处于不同学科交叉点的迷人研究领域中的挑战。

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