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Biocatalyzed Regio- and Chemoselective Ester Cleavage: Synthesis of Bioactive Molecules

机译:生物催化的测定和化学选择性酯切割:生物活性分子的合成

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摘要

Biocatalysis is one of the greenest technologies for the synthesis of bioactive molecules, for which the presence of various functional groups requires selective protection or deprotection processes. The effective combination of protecting group techniques often results in additional chemical synthetic steps. At this point, enzymes can prove very valuable, as they help to circumvent several reaction steps, owing to the selectivity they show for a particular group. Specifically, carboxylic acid and alcohol functionalities, as well as esters, are of high importance for the biological properties of certain molecules. Esters are enzyme-labile moieties, a characteristic that many drugs activity is based on. Ester cleavage is also required for synthesis, where beyond any doubt, the majority of reactions and conditions must be highly selective. This review aims to highlight a number of examples in the literature relative to regio- and chemoselective biocatalytic deprotection processes of the carboxyl and hydroxyl moieties, used in the synthesis of pharmaceuticals, bioactive molecules, and drug precursors.
机译:生物催化是合成生物活性分子的最紧逼的技术之一,其中各种官能团的存在需要选择性保护或脱保护过程。保护基团技术的有效组合通常导致额外的化学合成步骤。此时,酶可以证明是非常有价值的,因为它们有助于绕过几个反应步骤,由于它们显示了特定群体的选择性。具体地,羧酸和醇官能团以及酯对于某些分子的生物学性质具有很高的重要性。酯是酶 - 不稳定的部分,许多药物活性的特征是基于的。合成也需要酯切割,在毫无疑问,大多数反应和病症必须是高度选择性的。本综述旨在突出文献中的许多例子,相对于羧基和羟基部分的甲基和化学选择性生物催化剂脱保护过程,用于合成药物,生物活性分子和药物前体。

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