有机硼催化酰胺/肽键的直接形成。

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Masayoshi Koshizuka, Naoya Takahashi, Naoyuki Shimada
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引用次数: 0

摘要

酰胺和肽是多种天然和人工材料中无处不在的官能团,对生命科学和材料科学的发展至关重要。特别是近年来,它们在临床医学和药物发现方面的重要性日益凸显。现成的羧酸与胺的脱水缩合是最 "直接 "的酰胺合成方法,但这种方法通常需要一定量的缩合剂(偶联试剂)。从绿色化学的角度来看,催化直接脱水酰胺化已成为合成酰胺的 "理想 "方法,其原理是副产物只有水,原子效率高,环保、节能、安全。相反,有机硼化合物(如硼酸)在各行各业中被广泛用作铃木-宫浦交叉偶联反应或药物结构的偶联试剂,是一种毒性低、易于处理的环境友好型分子。根据有机硼化合物的化学特性,它们具有潜在的路易斯酸性,并能与脱水形成可逆的共价键,因此作为催化剂具有吸引力。本综述探讨了利用有机硼催化羧酸直接脱水酰胺/肽键形成反应的发展研究,并根据化学键和催化作用对这些研究进行了分类,时间跨度从开发初期到 2023 年,历时约 25 年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Organoboron catalysis for direct amide/peptide bond formation.

Organoboron catalysis for direct amide/peptide bond formation.

Amides and peptides are ubiquitous functional groups found in several natural and artificial materials, and they are essential for the advancement of life and material sciences. In particular, their relevance in clinical medicine and drug discovery has increased in recent years. Dehydrative condensation of readily available carboxylic acids with amines is the most "direct" method for amide synthesis; however, this methodology generally requires a stoichiometric amount of condensation agent (coupling reagent). Catalytic direct dehydrative amidation has become an "ideal" methodology for synthesizing amides from the perspective of green chemistry, with water as the only byproduct in principle, high atom efficiency, environmentally friendly, energy saving, and safety. Conversely, organoboron compounds, such as boronic acids, which are widely used in various industries as coupling reagents for Suzuki-Miyaura cross-coupling reactions or pharmaceutical structures, are environmentally friendly molecules that have low toxicity and are easy to handle. Based on the chemical properties of organoboron compounds, they have potential Lewis acidity and the ability to form reversible covalent bonds with dehydration, making them attractive as catalysts. This review explores studies on the development of direct dehydrative amide/peptide bond formation reactions from carboxylic acids using organoboron catalysis, classifying them based on chemical bonding and catalysis over approximately 25 years, from the early developmental days to 2023.

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来源期刊
Chemical Communications
Chemical Communications 化学-化学综合
CiteScore
8.60
自引率
4.10%
发文量
2705
审稿时长
1.4 months
期刊介绍: ChemComm (Chemical Communications) is renowned as the fastest publisher of articles providing information on new avenues of research, drawn from all the world''s major areas of chemical research.
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