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Tailoring mesoporous-silica nanoparticles for robust immobilization of lipase and biocatalysis
Authors:Kalantari  Mohammad  Yu  Meihua  Yang  Yannan  Strounina  Ekaterina  Gu  Zhengying  Huang  Xiaodan  Zhang  Jun  Song  Hao  Yu  Chengzhong
Affiliation:1. Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia;2. Center for Advanced Imaging, The University of Queensland, Brisbane, QLD 4072, Australia
Abstract:The rational design of nano-carriers is critical for modem enzyme immobilization for advanced biocatalysis.Herein,we report the synthesis of octadecylalkylmodified mesoporous-silica nanoparticles (C18-MSNs) with a high C18 content (~19 wt.%) and tunable pore sizes (1.6-13 nm).It is demonstrated that the increased hydrophobic content and a tailored pore size (slightly larger than the size of lipase) are responsible for the high performance of immobilized lipase.The optimized C18-MSNs exhibit a loading capacity of 711 mg/g and a specific activity 5.23 times higher than that of the free enzyme.Additionally,93% of the initial activity is retained after reuse five times,which is better than the best performance reported to date.Our findings pave the way for the robust immobilization of lipase for biocatalytic applications.
Keywords:silica  hydrophobic  lipase immobilization  hyperactivation  pore size
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