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分子夹、裂缝和夹子在药物中的应用。

Pharmaceutical Applications of Molecular Tweezers, Clefts and Clips.

机构信息

Gene Delivery Laboratory, Faculty of pharmacy, Université de Montréal, H3C 3J7, Montréal, Québec, Canada.

Univ. Bordeaux, ARNA Laboratory, F-33016 Bordeaux, France.

出版信息

Molecules. 2019 May 9;24(9):1803. doi: 10.3390/molecules24091803.

Abstract

Synthetic acyclic receptors, composed of two arms connected with a spacer enabling molecular recognition, have been intensively explored in host-guest chemistry in the past decades. They fall into the categories of molecular tweezers, clefts and clips, depending on the geometry allowing the recognition of various guests. The advances in synthesis and mechanistic studies have pushed them forward to pharmaceutical applications, such as neurodegenerative disorders, infectious diseases, cancer, cardiovascular disease, diabetes, etc. In this review, we provide a summary of the synthetic molecular tweezers, clefts and clips that have been reported for pharmaceutical applications. Their structures, mechanism of action as well as in vitro and in vivo results are described. Such receptors were found to selectively bind biological guests, namely, nucleic acids, sugars, amino acids and proteins enabling their use as biosensors or therapeutics. Particularly interesting are dynamic molecular tweezers which are capable of controlled motion in response to an external stimulus. They proved their utility as imaging agents or in the design of controlled release systems. Despite some issues, such as stability, cytotoxicity or biocompatibility that still need to be addressed, it is obvious that molecular tweezers, clefts and clips are promising candidates for several incurable diseases as therapeutic agents, diagnostic or delivery tools.

摘要

合成非环受体由两条臂组成,通过连接臂的间隔物实现分子识别,在过去几十年的主客体化学中得到了深入研究。它们根据允许识别各种客体的几何形状分为分子夹、裂缝和夹子。合成和机制研究的进展推动了它们在制药方面的应用,如神经退行性疾病、传染病、癌症、心血管疾病、糖尿病等。在这篇综述中,我们总结了已报道用于制药应用的合成分子夹、裂缝和夹子。描述了它们的结构、作用机制以及体外和体内结果。这些受体被发现能够选择性地结合生物客体,即核酸、糖、氨基酸和蛋白质,使其能够用作生物传感器或治疗剂。特别有趣的是能够对外界刺激做出可控运动的动态分子夹。它们已被证明可用作成像剂或设计控制释放系统。尽管仍存在一些问题,如稳定性、细胞毒性或生物相容性等,需要进一步解决,但很明显,分子夹、裂缝和夹子作为治疗剂、诊断或给药工具,是几种不治之症的有前途的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcf6/6539068/6465b9977cea/molecules-24-01803-g001.jpg

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