Merck
CN
  • Candida rugosa lipase immobilization on hydrophilic charged gold nanoparticles as promising biocatalysts: Activity and stability investigations.

Candida rugosa lipase immobilization on hydrophilic charged gold nanoparticles as promising biocatalysts: Activity and stability investigations.

Colloids and surfaces. B, Biointerfaces (2015-05-15)
Iole Venditti, Cleofe Palocci, Laura Chronopoulou, Ilaria Fratoddi, Laura Fontana, Marco Diociaiuti, Maria Vittoria Russo
摘要

In this work, a simple and versatile methodology to obtain two different bioconjugated systems has been developed by the immobilization of Candida rugosa lipase (CRL) on hydrophilic gold nanoparticles functionalized with 2-diethylaminoethanethiol hydrochloride (DEA) or with sodium 3-mercapto-1-propanesulfonate (3MPS), namely Au-DEA@CRL and Au-3MPS@CRL. Both spectroscopic and morphological properties of metal nanoparticles have been deeply investigated. The enzyme loading and lipolytic activity of AuNPs@CRL bioconjugates have been studied with respect to different surface functionalization and compared with the free enzyme. Some physical and chemical parameters had a strong effect on enzyme activity and stability, that were improved in the case of the Au-DEA@CRL bioconjugate, which showed a remarkable biocatalytic performance (95% of residual lipolytic activity compared with free CRL) and stability in experimental conditions concerning pH (range 5-8) and temperature (range 20-60°C), as often required for the industrial scale up of catalytic systems.

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Sigma-Aldrich
二氯甲烷, anhydrous, ≥99.8%, contains 40-150 ppm amylene as stabilizer
Sigma-Aldrich
酚酞, ACS reagent
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酚酞 溶液, 0.5 wt. % in ethanol: water (1:1)
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三丁酸甘油酯, ≥99%
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丙酮, natural, ≥97%
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O-乙酰基-L-肉碱盐酸盐 盐酸盐, ≥99% (titration), powder
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硼氢化钠 溶液, 2.0 M in triethylene glycol dimethyl ether
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丙酮, ≥99%, meets FCC analytical specifications