Improved performance of immobilized lipase by interfacial activation on Fe3O4@PVBC nanoparticles

31Citations
Citations of this article
29Readers
Mendeley users who have this article in their library.

Abstract

An effective strategy for enhancement of catalytic activity and stability of immobilized lipase by interfacial activation on Fe3O4@PVBC (Fe3O4@polyvinylbenzyl chloride) nanoparticles was developed, which involved the fabrication of core-shelled Fe3O4@PVBC nanoparticles via an emulsion polymerization process and the subsequent immobilization of lipase in phosphate buffer. Due to the magnetic nature of Fe3O4 cores and the presence of chloromethyl-functionalized polymer shells, the Fe3O4@PVBC nanoparticles were employed as valid magnetic carriers for lipase immobilization. Bradford assays indicated that the loading amount of lipase on the Fe3O4@PVBC nanoparticles was calculated to be 162.5 mg protein per g particles. The catalytic activity of the immobilized lipase retained about 99.6 ± 3.3% of the free enzyme activity, which was attributed to interfacial activation of lipase by Fe3O4@PVBC nanoparticles. Thermal and urea tolerance tests revealed that the immobilized lipase exhibited much better stabilities. Additionally, the immobilized lipase retained more than 69.8% of its initial activities after 10 times of reuse. It is believed that the results of the present investigation may provide a versatile approach for designing and fabricating biocatalysts with high activation and stability.

Cite

CITATION STYLE

APA

Chen, Z., Liu, L., & Yang, R. (2017). Improved performance of immobilized lipase by interfacial activation on Fe3O4@PVBC nanoparticles. RSC Advances, 7(56), 35169–35174. https://doi.org/10.1039/c7ra05723g

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free