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用于皮克林乳液增强生物催化的、在油水界面具有可调定位的脂肪酶包埋胶体囊泡

Lipase-Entrapped Colloidosomes with Tunable Positioning at the Oil-Water Interface for Pickering Emulsion-Enhanced Biocatalysis.

作者信息

Zeng Qi, Sun Mengmeng, Xie Xin, Zhang Yuli, Hou Haoyue, Fang Xingyuan, Guo Ting, Yuan Hao, Meng Tao

机构信息

Sichuan Engineering Research Center for Biomimetic Synthesis of Natural Drugs, School of Life Sciences and Engineering, Southwest Jiaotong University, Chengdu, Sichuan610031, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Dec 14;14(49):54781-54789. doi: 10.1021/acsami.2c17451. Epub 2022 Dec 1.

Abstract

Pickering interfacial biocatalysis (PIB) paves the way for efficient enzymatic catalysis in the biphasic system. However, the Pickering interfacial biocatalysts located on the oil-water interface still face the inevitable deactivation when one of the phases contains the reactant that inactivates the enzyme. Herein, the positioning of lipase-entrapped colloidosomes (LECs) at the emulsion interface is rationally designed by physically tuning the wettability, which allows LECs to protrude into the selected phase to protect the lipase away from the damage of the reactant. As a proof of concept, LECs with different positioning at the interface are used as Pickering interfacial biocatalysts to produce biodiesel by esterification of lauric acid and methanol. Impressively, the LECs that protrude into the oil phase possess an optimal catalytic performance to protect more lipases away from the damage of the reactant of short-chain alcohol, which shows an 8.18-fold enhancement in specific activity relative to the free lipase, reach a biodiesel yield of 80.37% after 8 h, and retain the 96.44% of relative activity after 10 cycles. This study provides a novel and robust platform for Pickering emulsion-enhanced biocatalysis.

摘要

皮克林界面生物催化(PIB)为双相体系中的高效酶催化铺平了道路。然而,当其中一相含有使酶失活的反应物时,位于油水界面的皮克林界面生物催化剂仍不可避免地会失活。在此,通过物理调节润湿性合理设计了包裹脂肪酶的胶体囊泡(LEC)在乳液界面的定位,这使得LEC能够突出到选定的相中,从而保护脂肪酶免受反应物的损害。作为概念验证,将在界面处具有不同定位的LEC用作皮克林界面生物催化剂,通过月桂酸和甲醇的酯化反应生产生物柴油。令人印象深刻的是,突出到油相中的LEC具有最佳的催化性能,能够保护更多的脂肪酶免受短链醇反应物的损害,其比活性相对于游离脂肪酶提高了8.18倍,8小时后生物柴油产率达到80.37%,并且在10个循环后保留了96.44%的相对活性。该研究为皮克林乳液增强生物催化提供了一个新颖且强大的平台。

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