Issue 14, 2021

Nutritional targeting modification of silkworm pupae oil catalyzed by a smart hydrogel immobilized lipase

Abstract

To prepare a nutritional supplement using silkworm pupae oil (SPO) as a feedstock, a microfluidic reactor with a smart hydrogel immobilized lipase was first constructed to reduce the relative content of palmitic acid at sn-1,3 and improve the nutritional function. The effects of flow rate, reaction temperature, and substrate molar ratio were investigated. In vitro digestion and pH-stat models were employed to analyze the digestion feature after the modification of SPO, while HPLC-ELSD, zeta potential, DSC, and TGA were used to evaluate the nutritional function. The relative content of “OOO” and “OPO” type triglycerides was increased by 49.48% and 107.67%, and that of palmitic acid at sn-1,3 was decreased by 49.61% in 10 s. After the verification of the in vitro digestion model, the fatty acid release rate of the modified SPO was significantly improved by 22.07%, indicating the nutritional function improvement of SPO. Therefore, the nutritional function of SPO has been improved successfully by the application of a microchannel reactor with photo-immobilized lipase, which could set a reference for the utilization of insect oil resources.

Graphical abstract: Nutritional targeting modification of silkworm pupae oil catalyzed by a smart hydrogel immobilized lipase

Associated articles

Supplementary files

Article information

Article type
Paper
Submitted
25 Mar 2021
Accepted
20 May 2021
First published
20 May 2021

Food Funct., 2021,12, 6240-6253

Nutritional targeting modification of silkworm pupae oil catalyzed by a smart hydrogel immobilized lipase

J. Wang, C. Wu, C. Yan, H. Chen, S. You, S. Sheng, F. Wu and J. Wang, Food Funct., 2021, 12, 6240 DOI: 10.1039/D1FO00913C

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