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连续流生物催化:来自……的脂肪酶TL IM催化嘌呤核苷酯的合成

Continuous flow biocatalysis: synthesis of purine nucleoside esters catalyzed by lipase TL IM from .

作者信息

Zhang Shi-Yi, Fu Guo-Neng, Du Li-Hua, Lin Hang, Zhang Ao-Ying, Xie Han-Jia, Sheng Zhi-Kai, Xue Miao-Miao, Yan Bing-Lin, Liu Yi, Ruan Zhi-Xuan, Pan Bing-Le, Zhou Tong-Yao, Luo Xi-Ping

机构信息

College of Pharmaceutical Science, ZheJiang University of Technology Hangzhou 310014 China

Zhejiang Provincial Key Laboratory of Chemical Utilization of Forestry Biomass, Zhejiang A&F University Hangzhou 311300 China

出版信息

RSC Adv. 2024 Apr 4;14(16):10953-10961. doi: 10.1039/d4ra00097h. eCollection 2024 Apr 3.

Abstract

Purine nucleoside ester is one of the derivatives of purine nucleoside, which has antiviral and anticancer activities. In this work, a continuous flow synthesis of purine nucleoside esters catalyzed by lipase TL IM from was successfully achieved. Various parameters including solvent, reaction temperature, reaction time/flow rate and substrate ratio were investigated. The best yields were obtained with a continuous flow microreactor for 35 min at 50 °C with the substrate ratio of 1 : 5 (nucleosides to vinyl esters) in the solvent of -amyl alcohol. 12 products were efficiently synthesized with yields of 78-93%. Here we reported for the first time the use of lipase TL IM from in the synthesis of purine nucleoside esters. The significant advantages of this methodology are a green solvent and mild conditions, a simple work-up procedure and the highly reusable biocatalyst. This research provides a new technique for rapid synthesis of anticancer and antiviral nucleoside drugs and is helpful for further screening of drug activity.

摘要

嘌呤核苷酯是嘌呤核苷的衍生物之一,具有抗病毒和抗癌活性。在本工作中,成功实现了由脂肪酶TL IM催化的嘌呤核苷酯的连续流动合成。研究了包括溶剂、反应温度、反应时间/流速和底物比例在内的各种参数。在50℃下,使用连续流动微反应器,以底物比例1∶5(核苷与乙烯基酯)在叔戊醇溶剂中反应35分钟,获得了最佳产率。高效合成了12种产物,产率为78 - 93%。在此我们首次报道了使用来自的脂肪酶TL IM合成嘌呤核苷酯。该方法的显著优点是绿色溶剂和温和条件、简单的后处理程序以及高度可重复使用的生物催化剂。本研究为快速合成抗癌和抗病毒核苷药物提供了一种新技术,有助于进一步筛选药物活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea6/10993233/c28306eb5ef4/d4ra00097h-s1.jpg

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