School of Biomedical Engineering, Sun Yat-sen University, Guangzhou, Guangdong 510006, China.
Biomater Sci. 2019 Nov 19;7(12):4963-4983. doi: 10.1039/c9bm00716d.
Enzymes, as green catalysts, can catalyze varied reactions with high efficiency. Among various types of enzymes, Candida antarctica lipase B (CALB) is the most commonly used one, due to its high catalytic activity in polymer synthesis. This review highlights the polymers synthesized via the catalysis of immobilized CALB, and focuses on their applications in biomedical areas, especially their use in drug and gene delivery systems. Upholding the idea of sustainable and environment-friendly green chemistry, and emphasizing the safety of products applied for biomedical uses, lipase catalysts are better choices compared to inorganic metal catalysts. We introduced the background and advantages of lipase catalysis and reviewed the lipase-catalyzed synthetic routes involving ring opening polymerization, polycondensation and others. For biomedical applications, we mainly discuss enzymatically synthesized polyesters, due to their outstanding biodegradability and synthetic possibilities. We firstly introduced our early work as basic thinking, then we summarized the subsequent work that focused on developing multiple functional polyesters for different biomedical applications. Prominent experimental results have been shown and the significance of CALB-catalyzed synthesis has been proved.
酶作为绿色催化剂,可以高效地催化各种反应。在各种类型的酶中,由于其在聚合物合成中的高催化活性,南极假丝酵母脂肪酶 B(CALB)是最常用的一种。本文重点介绍了通过固定化 CALB 催化合成的聚合物,并聚焦于它们在生物医学领域的应用,特别是在药物和基因传递系统中的应用。坚持可持续和环境友好的绿色化学理念,并强调应用于生物医学的产品的安全性,与无机金属催化剂相比,脂肪酶催化剂是更好的选择。我们介绍了脂肪酶催化的背景和优势,并综述了涉及开环聚合、缩聚等的脂肪酶催化合成途径。对于生物医学应用,我们主要讨论了酶合成的聚酯,因为它们具有出色的生物降解性和合成可能性。我们首先介绍了我们早期的工作作为基本思路,然后总结了随后的工作,重点是开发用于不同生物医学应用的多功能聚酯。已经展示了突出的实验结果,并证明了 CALB 催化合成的重要性。