| Title : Facile preparation of magnetic carbon nanotubes-immobilized lipase for highly efficient synthesis of 1,3-dioleoyl-2-palmitoylglycerol-rich human milk fat substitutes - Zheng_2017_Food.Chem_228_476 |
| Author(s) : Zheng M , Wang S , Xiang X , Shi J , Huang J , Deng Q , Huang F , Xiao J |
| Ref : Food Chem , 228 :476 , 2017 |
|
Abstract :
In this study, Candida lipolytica lipase (CLL) was immobilized on magnetic multi-walled carbon nanotubes (mMWCNTs) via hydrophobic and cation-exchange interaction. The resultant immobilized CLL showed much better thermal stability, biocatalyst activity and easier recycling than the free form. A method for efficient enzymatic acidolysis of tripalmitin (PPP) with oleic acid (OA), to produce OPO-rich TAGs, was developed, using the immobilized CLL as the biocatalyst. Under optimized conditions (2% water, 20mg/ml enzyme, 1:6 PPP/OA, 50 degreesC, 2h), the content of OPO in the final product reached 46.5%. CLL@mMWCNTs had a better activity and manipulative stability than commercial lipases. More importantly, the feasibility of CLL@mMWCNTs was also validated in the practical production of OPO-rich TAGs, using lard and restructured palm oil as the raw material. These results suggest that CLL@mMWCNTs is a promising biocatalyst for the OPO-rich TAGs production and will be helpful for the infant formula industry. |
| PubMedSearch : Zheng_2017_Food.Chem_228_476 |
| PubMedID: 28317752 |
Zheng M, Wang S, Xiang X, Shi J, Huang J, Deng Q, Huang F, Xiao J (2017)
Facile preparation of magnetic carbon nanotubes-immobilized lipase for highly efficient synthesis of 1,3-dioleoyl-2-palmitoylglycerol-rich human milk fat substitutes
Food Chem
228 :476
Zheng M, Wang S, Xiang X, Shi J, Huang J, Deng Q, Huang F, Xiao J (2017)
Food Chem
228 :476