化学
阳离子聚合
碳二亚胺
动态光散射
米氏-门汀动力学
高分子化学
共价键
Zeta电位
聚合
甲基丙烯酸酯
化学工程
有机化学
酶
酶分析
聚合物
纳米颗粒
工程类
作者
Nidhi C. Dubey,Bijay P. Tripathi,Manfred Stamm,Leonid Ionov
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2014-06-18
卷期号:15 (7): 2776-2783
被引量:24
摘要
The flexibility in tuning the structure and charge properties of PNIPAm microgels during their synthesis makes them a suitable choice for various biological applications. Two-step free radical polymerization, a common method employed for synthesis of core-shell microgel has been well adopted to obtain cationic poly(N-isopropylacrylamide-aminoethyl methacrylate) (PNIPAm-AEMA) shell and PNIPAm core. Scanning electron microscopy (SEM), dynamic light scattering (DLS), zeta potential, and ninhydrin assay suggests nearly monodispersed particles of cationic nature. Amino groups on the microgel provides suitable attachment point for covalent immobilization of acetyl coenzyme A synthetase (Acs) via 1-ethyl-3-(3-N,N- dimethylaminopropyl) carbodiimide (EDC) chemistry. On immobilization, 61.55% of initial activity of Acs has been retained, while Michaelis-Menten kinetics of the immobilized Acs indicates identical K(m) (Michaelis constant) but decrease in the V(max) (maximum substrate conversion rate) compared to free enzyme. Immobilized Acs shows an improvement in activity at wide temperature and pH range and also demonstrates good thermal, storage, and operational stability. The Acs-microgel bioconjugate has been successfully reused for four consecutive operation cycles with more than 50% initial activity.
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