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中国博士后科学基金(20060400337)

作品数:2 被引量:2H指数:1
相关作者:黄小军徐志康陆茵王振刚戈丹更多>>
相关机构:浙江大学宁波大学更多>>
发文基金:中国博士后科学基金国家自然科学基金国家杰出青年科学基金更多>>
相关领域:生物学化学工程更多>>

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Immobilization and Properties of Lipase from Candida rugosa on Electrospun Nanofibrous Membranes with Biomimetic Phospholipid Moities被引量:1
2008年
Reported here is a protocol to fabricate a biocatalyst with high enzyme loading and activity retention, from the conjugation of electrospun nanofibrous membrane having biomimetic phospholipid moiety and lipase. To improve the catalytic efficiency and activity of the immobilized enzyme, poly(acrylonitrile-co-2-methacryloyloxyethyl phosphorylcholine)s(PANCMPCs) were, respectively, electrospun into nanofibrous membranes with a mean diameter of 90 nm, as a support for enzyme immobilization. Lipase from Candida rugosa was immobilized on these nanofibrous membranes by adsorption. Properties of immobilized lipase on PANCMPC nanofibrous membranes were compared with those of the lipase immobilized on the polyacrylonitrile(PAN) nanofibrous and sheet membranes, respectively. Effective enzyme loading on the nanofibrous membranes was achieved up to 22.0 mg/g, which was over 10 times that on the sheet membrane. The activity retention of immobilized lipase increased from 56.4% to 76.8% with an increase in phospholipid moiety from 0 to 9.6%(molar fraction) in the nanofibrous membrane. Kinetic parameter Km was also determined for free and immobilized lipase. The Km value of the immobilized lipase on the nanofibrous membrane was obviously lower than that on the sheet membrane. The optimum pH was 7.7 for free lipase, but shifted to 8.3-8.5 for immobilized lipases. The optimum temperature was determined to be 35 ℃ for the free enzyme, but 42-44℃ for the immobilized ones, respectively. In addition, the thermal stability, reusability, and storage stability of the immobilized lipase were obviously improved compared to the free one.
HUANG Xiao-jun YU An-guo GE Dan XU Zhi-kang
关键词:ELECTROSPINNINGLIPASE
聚苯氧基膦腈的合成及其电纺纤维的制备被引量:1
2008年
以环状三聚六氯磷腈(HCCP)为原料,采用热开环聚合方法,合成了聚二氯磷腈,再利用亲核取代反应合成了聚苯氧基膦腈(PPPh)。采用FT—IR、^1H NMR、GPC、DSC、TGA等对所得到的聚合物进行了结构表征和性能测试。通过静电纺丝法制备聚苯氧基膦腈纤维,研究了纺丝液浓度、电场强度、挤出速度等对纤维形态的影响。结果表明,在聚合物溶液浓度为7(wt)%~8(wt)%、挤出速度为0.3~1.0mL/h、接收距离为20cm、电压为22kV的静电纺丝条件下,可制备纤维直径为300~800nm的PPPh纤维。
戈丹黄小军王振刚陆茵徐志康
关键词:静电纺丝纤维
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