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Biomedical Applications of Metallosupramolecular Assemblies—Structural Aspects of the Anticancer Activity

机译:金属超分子组装体的生物医学应用-抗癌活性的结构方面

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摘要

The design and development of metallosupramolecular systems has resulted in construction of a myriad of fascinating structures with highly diverse properties and potential applications. Assessment of the biomedical applications of metallosupramolecular assemblies is an emerging field of research that stems from the recently demonstrated promising results on such systems. After the pioneering works of Therrien and coworkers on organometallic Ru-cages with promising anticancer properties, this topic has evolved to the more recent studies on bioactivity of supramolecular coordination complexes built from different metal ions and various multidentate ligands. Sufficient amount of data on the anticancer activity of metallosupramolecules has already been reported and allows outlining some general tendencies in the structural aspects of the biological activity. The main structural properties of the complexes that can be readily modified to enhance their activity are the size, the shape and charge of the formed complexes. Moreover, the intrinsic properties of the building components could predetermine some of the main characteristics of the overall supramolecular complex, such as its optical properties, chemical reactivity, solubility, etc., and could, thereby, define the areas of its biomedical applications. The unique structural property of most of the metallosupramolecular assemblies, however, is the presence of a discrete cavity that renders a whole range of additional applications resulting from specific host-guest interactions. The encapsulations of small bioactive or fluorescent molecules have been employed for delivery or recognition purposes in many examples. On the other hand, metallosupramolecules have been imbedded into target-specific polymeric nanoparticles that resulted in a successful combination of their therapeutic and diagnostic properties, making them promising for theranostic application in cancer treatment. The aim of this review paper is to mark out some key tendencies in the reported metallosupramolecular structures in relation with their biological activity and potential areas of biomedical application. In this way, a useful set of guidelines can be delineated to help synthetic chemists broaden the application areas of their supramolecular systems by few structural changes.
机译:金属超分子系统的设计和开发已导致构建了具有各种特性和潜在应用的众多引人入胜的结构。对金属超分子组装体的生物医学应用的评估是一个新兴的研究领域,其源于最近在此类系统上展示出的有希望的结果。在Therrien和他的同事们在具有前景的抗癌特性的有机金属钌笼子上的开创性工作之后,这个话题发展到了对由不同金属离子和各种多齿配体构建的超分子配位化合物的生物活性的最新研究。关于金属超分子的抗癌活性的大量数据已经被报道,并且可以概述生物活性的结构方面的一些一般趋势。可以容易地改性以增强其活性的复合物的主要结构性质是形成的复合物的大小,形状和电荷。此外,建筑构件的固有性质可以预先确定整个超分子复合物的一些主要特征,例如其光学性质,化学反应性,溶解度等,从而可以确定其生物医学应用领域。然而,大多数金属超分子组装体的独特结构性质是存在离散的腔体,该腔体由于特定的宿主-客体相互作用而产生了一系列的附加应用。在许多实例中,小生物活性或荧光分子的包囊已用于递送或识别目的。另一方面,金属超分子已嵌入靶标特异性聚合物纳米颗粒中,从而成功地将其治疗和诊断特性结合在一起,使其有望在肿瘤治疗中应用。这篇综述的目的是要指出所报道的金属超分子结构的一些主要趋势,这些趋势与它们的生物学活性和生物医学应用的潜在领域有关。这样,可以勾勒出一套有用的指导方针,以帮助合成化学家通过很少的结构改变来拓宽其超分子系统的应用领域。

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