MacroEng Group, Instituto de Ciencia y Tecnología de Polímeros, ICTP-CSIC, C/Juan de la Cierva, 3, Madrid, 28006, Spain.
Interdisciplinary Platform for "Sustainable Plastics towards a Circular Economy" (SUSPLAST-CSIC), Madrid, 28006, Spain.
Macromol Biosci. 2021 Oct;21(10):e2100156. doi: 10.1002/mabi.202100156. Epub 2021 Jul 7.
This article reviews the most important advances in the enzymatic synthesis of polyesters. In first place, the different processes of polyester enzymatic synthesis, i.e., polycondensation, ring opening, and chemoenzymatic polymerizations, and the key parameters affecting these reactions, such as enzyme, concentration, solvent, or temperature, are analyzed. Then, the latest articles on the preparation of polyesters either by direct synthesis or via modification are commented. Finally, the main bioapplications of enzymatically obtained polyesters, i.e., antimicrobial, drug delivery, or tissue engineering, are described. It is intended to point out the great advantages that enzymatic polymerization present to obtain polymers and the disadvantages found to develop applied materials.
本文综述了聚酯酶促合成方面最重要的进展。首先,分析了聚酯酶促合成的不同方法,如缩聚、开环和化学酶聚合,以及影响这些反应的关键参数,如酶、浓度、溶剂或温度。然后,对通过直接合成或修饰来制备聚酯的最新文章进行了评论。最后,描述了酶法获得的聚酯在抗菌、药物传递或组织工程等主要生物应用方面的情况。本文旨在指出酶聚合在获得聚合物方面的巨大优势,以及在开发应用材料方面存在的不足。