纳米材料
固定化酶
可重用性
生物相容性
纳米技术
化学
酶
纳米-
热稳定性
材料科学
有机化学
计算机科学
复合材料
程序设计语言
软件
作者
Sahar Zahirinejad,Roohullah Hemmati,Ahmad Homaei,Ali Dinari,Saman Hosseinkhani,Soheila Mohammadi,Fábio Vianello
标识
DOI:10.1016/j.colsurfb.2021.111774
摘要
A variety of organic nanomaterials and organic polymers are used for enzyme immobilization to increase enzymes stability and reusability. In this study, the effects of the immobilization of enzymes on organic and organic-inorganic hybrid nano-supports are compared. Immobilization of enzymes on organic support nanomaterials was reported to significantly improve thermal, pH and storage stability, acting also as a protection against metal ions inhibitory effects. In particular, the effects of enzyme immobilization on reusability, physical, kinetic and thermodynamic parameters were considered. Due to their biocompatibility with low health risks, organic support nanomaterials represent a good choice for the immobilization of enzymes. Organic nanomaterials, and especially organic-inorganic hybrids, can significantly improve the kinetic and thermodynamic parameters of immobilized enzymes compared to macroscopic supports. Moreover, organic nanomaterials are more environment friendly for medical applications, such as prodrug carriers and biosensors. Overall, organic hybrid nanomaterials are receiving increasing attention as novel nano-supports for enzyme immobilization and will be used extensively.
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