Jiang Hang, Hu Xiaofeng, Li Yunxing, Yang Cheng, Ngai To
The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University Wuxi 214122 P. R. China
Department of Chemistry, The Chinese University of Hong Kong Shatin, N. T. Hong Kong P. R. China
Chem Sci. 2021 Aug 17;12(37):12463-12467. doi: 10.1039/d1sc03693a. eCollection 2021 Sep 29.
Despite Pickering interfacial biocatalysis being a popular topic in biphasic biocatalysis, the development of water-in-oil (w/o) emulsion systems stabilized by single particles remains a challenge. For the first time, hydrophobized proteinaceous colloidosomes with magnetic-responsiveness are developed to function as both an enzyme carrier and emulsifier, achieving a breakthrough in protein-based w/o Pickering bioconversion. Enzyme-loaded protein colloidosomes are synthesized by a facile and mild method emulsion templating. This system exhibits superior catalytic activity to other systems at the oil-water interface. Besides, feasible enzyme recovery and reusability ensure that this novel system can be employed as an efficient and eco-friendly recyclable platform.
尽管皮克林界面生物催化是双相生物催化中的一个热门话题,但由单颗粒稳定的油包水(w/o)乳液体系的开发仍然是一个挑战。首次开发出具有磁响应性的疏水化蛋白质胶体囊泡,使其既能作为酶载体又能作为乳化剂,在基于蛋白质的w/o皮克林生物转化方面取得了突破。通过一种简便温和的方法——乳液模板法合成了负载酶的蛋白质胶体囊泡。该体系在油水界面表现出优于其他体系的催化活性。此外,可行的酶回收和可重复使用性确保了这个新体系可以作为一个高效且环保的可循环平台。