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利用铜(I)催化的叠氮-炔、硫代-溴和末端双“点击”反应组装具有生物学相关性的复杂大分子和自组装体。

Assembling Complex Macromolecules and Self-Organizations of Biological Relevance with Cu(I)-Catalyzed Azide-Alkyne, Thio-Bromo, and TERMINI Double "Click" Reactions.

作者信息

Moreno Adrian, Lligadas Gerard, Adamson Jasper, Maurya Devendra S, Percec Virgil

机构信息

Laboratory of Sustainable Polymers, Department of Analytical Chemistry and Organic Chemistry, University Rovira i Virgili, 43007 Tarragona, Spain.

Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.

出版信息

Polymers (Basel). 2023 Feb 21;15(5):1075. doi: 10.3390/polym15051075.

Abstract

In 2022, the Nobel Prize in Chemistry was awarded to Bertozzi, Meldal, and Sharpless "for the development of click chemistry and biorthogonal chemistry". Since 2001, when the concept of click chemistry was advanced by Sharpless laboratory, synthetic chemists started to envision click reactions as the preferred choice of synthetic methodology employed to create new functions. This brief perspective will summarize research performed in our laboratories with the classic Cu(I)-catalyzed azide-alkyne click (CuAAC) reaction elaborated by Meldal and Sharpless, with the thio-bromo click (TBC) and with the less-used, irreversible TERminator Multifunctional INItiator (TERMINI) dual click (TBC) reactions, the last two elaborated in our laboratory. These click reactions will be used to assemble, by accelerated modular-orthogonal methodologies, complex macromolecules and self-organizations of biological relevance. Self-assembling amphiphilic Janus dendrimers and Janus glycodendrimers together with their biological membrane mimics known as dendrimersomes and glycodendrimersomes as well as simple methodologies to assemble macromolecules with perfect and complex architecture such as dendrimers from commercial monomers and building blocks will be discussed. This perspective is dedicated to the 75th anniversary of Professor Bogdan C. Simionescu, the son of my (VP) Ph.D. mentor, Professor Cristofor I. Simionescu, who as his father, took both science and science administration in his hands, and dedicated his life to handling them in a tandem way, to their best.

摘要

2022年,诺贝尔化学奖授予了贝托齐、梅尔达尔和夏普莱斯,“以表彰他们在点击化学和生物正交化学方面的发展”。自2001年夏普莱斯实验室提出点击化学概念以来,合成化学家开始将点击反应视为创造新功能的合成方法的首选。这篇简短的综述将总结我们实验室所进行的研究,这些研究涉及梅尔达尔和夏普莱斯阐述的经典铜(I)催化的叠氮化物-炔烃点击反应(CuAAC)、硫代-溴点击反应(TBC)以及我们实验室阐述的较少使用的不可逆终止子多功能引发剂(TERMINI)双点击反应(TBC)。这些点击反应将用于通过加速的模块化正交方法组装具有生物学相关性的复杂大分子和自组装体。将讨论自组装两亲性Janus树枝状大分子和Janus糖树枝状大分子,以及它们的生物膜模拟物树枝状大分子囊泡和糖树枝状大分子囊泡,还有从商业单体和构建块组装具有完美和复杂结构的大分子(如树枝状大分子)的简单方法。这篇综述是为了纪念博格丹·C·西米奥内斯库教授诞辰75周年,他是我的(副总裁)博士导师克里斯托弗·I·西米奥内斯库教授的儿子,他像他的父亲一样,一手抓科学,一手抓科学管理,并一生致力于以最佳方式将二者兼顾。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc3d/10007166/cb6c10f544a2/polymers-15-01075-g001.jpg

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