Laboratory of Organic and Metal-Organic Nitrogen-Oxygen Systems, N. D. Zelinsky Institute of Organic Chemistry, Leninsky prospect, 47, 119991, Moscow, Russia.
Department of Innovational Materials and Technologies Chemistry, Plekhanov Russian University of Economics, Stremyanny lane, 36, 117997, Moscow, Russia.
Top Curr Chem (Cham). 2021 Feb 5;379(2):8. doi: 10.1007/s41061-020-00317-3.
Cyclic boronate esters play important roles in organic synthesis, pharmacology, supramolecular chemistry and materials science owing to their stability in air and versatile reactivity. Most of these compounds contain a B-O-C linkage with an alkoxy- or carboxylate group bound to the boron atom (e.g. boronate-diol esters, MIDA boronates). Boron chelates comprising a B-O-N motif (BON heterocycles) are much less explored, although first representatives of this class were prepared in the early 1960s. In recent years, there has been a growing interest in BON heterocycles as new chemotypes for drug design. The exocyclic B-O-N linkage, which is readily formed under mild conditions, shows surprising hydrolytic and thermal resistance. This allows the formation of BON heterocycles to be used as click-type reactions for the preparation of bioconjugates and functionally modified polymers. We believe that BON heterocycles are promising yet underrated organoboron derivatives. This review summarizes the scattered information about known types of BON heterocycles, including their synthesis, reactivity and structural data. Available applications of BON heterocycles in materials science and medicinal chemistry, along with their prospects, are also discussed. The bibliography contains 289 references.
环状硼酸酯由于其在空气中的稳定性和多样的反应性,在有机合成、药理学、超分子化学和材料科学中发挥着重要作用。这些化合物大多含有一个 B-O-C 键,硼原子上连接着一个烷氧基或羧酸盐基团(例如硼酸二醇酯、MIDA 硼酸酯)。虽然硼配合物中包含 B-O-N 结构(BON 杂环)的化合物研究得较少,但这类化合物的第一批代表早在 20 世纪 60 年代就已被制备出来。近年来,人们对 BON 杂环作为新药设计的新型化学型越来越感兴趣。BON 杂环中环外的 B-O-N 键在温和条件下很容易形成,具有令人惊讶的水解和热稳定性。这使得 BON 杂环的形成可以作为点击型反应,用于制备生物缀合物和功能修饰聚合物。我们认为 BON 杂环是很有前途但被低估的有机硼衍生物。这篇综述总结了有关已知 BON 杂环的零散信息,包括它们的合成、反应性和结构数据。还讨论了 BON 杂环在材料科学和药物化学中的现有应用及其前景。参考文献包含 289 篇。