Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core
In this study, phenylalanine ammonia lyase (PAL) is used as model, and the cross-linked enzyme aggregates of PAL with crude-pored microspherical silica core (NH-PAL-CLEAs) are prepared. The conditions for the preparation of NH-PAL-CLEAs are optimized. Moreover, some characteristics of the NH-PAL-CLE...
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Hebei University of Science and Technology
2015-10-01
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doaj-f6ce566d606743d3841b0d81ff71091b2020-11-24T22:32:49ZzhoHebei University of Science and TechnologyJournal of Hebei University of Science and Technology1008-15422015-10-0136554655210.7535/hbkd.2015yx05016b201505016Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica coreJiandong CUI0Yamin ZHAO1Lianlian LI2Research Center for Fermentation Engineering of Hebei, Shijiazhuang, Hebei 050018, ChinaResearch Center for Fermentation Engineering of Hebei, Shijiazhuang, Hebei 050018, ChinaResearch Center for Fermentation Engineering of Hebei, Shijiazhuang, Hebei 050018, ChinaIn this study, phenylalanine ammonia lyase (PAL) is used as model, and the cross-linked enzyme aggregates of PAL with crude-pored microspherical silica core (NH-PAL-CLEAs) are prepared. The conditions for the preparation of NH-PAL-CLEAs are optimized. Moreover, some characteristics of the NH-PAL-CLEAs are examined. The optimized conditions for preparing NH-PAL-CLEAs are as follows: 117.75 mg silica, 0.2% (v/v) glutaraldehyde and 1 mL free PAL solution (2 U). Under optimized conditions, the maximum activity recovery of NH-PAL-CLEAs reaches 25%. Compared with PAL-CLEAs, the resulting NH-PAL-CLEAs can be easily separated from the reaction mixture by natural precipitation without centrifugation and filtration treatments. Moreover, NH-PAL-CLEAs show superior operational stability. This technique not only overcomes the difficulty to recover CLEAs due to their small particle sizes and soft for many industrial applications, but also reduces production cycle and energy consumption. As a result, this technique shows superior application prospect for enzyme immobilization.http://xuebao.hebust.edu.cn/hbkjdx/ch/reader/create_pdf.aspx?file_no=b201505016&flag=1&journal_enzyme engineeringphenylalanine ammonia lyase(PAL)crude-pored microspherical silicacross-linked enzyme aggregatesimmobilization enzyme |
collection |
DOAJ |
language |
zho |
format |
Article |
sources |
DOAJ |
author |
Jiandong CUI Yamin ZHAO Lianlian LI |
spellingShingle |
Jiandong CUI Yamin ZHAO Lianlian LI Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core Journal of Hebei University of Science and Technology enzyme engineering phenylalanine ammonia lyase(PAL) crude-pored microspherical silica cross-linked enzyme aggregates immobilization enzyme |
author_facet |
Jiandong CUI Yamin ZHAO Lianlian LI |
author_sort |
Jiandong CUI |
title |
Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
title_short |
Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
title_full |
Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
title_fullStr |
Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
title_full_unstemmed |
Preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
title_sort |
preparation of cross-linked enzyme aggregates with crude-pored microspherical silica core |
publisher |
Hebei University of Science and Technology |
series |
Journal of Hebei University of Science and Technology |
issn |
1008-1542 |
publishDate |
2015-10-01 |
description |
In this study, phenylalanine ammonia lyase (PAL) is used as model, and the cross-linked enzyme aggregates of PAL with crude-pored microspherical silica core (NH-PAL-CLEAs) are prepared. The conditions for the preparation of NH-PAL-CLEAs are optimized. Moreover, some characteristics of the NH-PAL-CLEAs are examined. The optimized conditions for preparing NH-PAL-CLEAs are as follows: 117.75 mg silica, 0.2% (v/v) glutaraldehyde and 1 mL free PAL solution (2 U). Under optimized conditions, the maximum activity recovery of NH-PAL-CLEAs reaches 25%. Compared with PAL-CLEAs, the resulting NH-PAL-CLEAs can be easily separated from the reaction mixture by natural precipitation without centrifugation and filtration treatments. Moreover, NH-PAL-CLEAs show superior operational stability. This technique not only overcomes the difficulty to recover CLEAs due to their small particle sizes and soft for many industrial applications, but also reduces production cycle and energy consumption. As a result, this technique shows superior application prospect for enzyme immobilization. |
topic |
enzyme engineering phenylalanine ammonia lyase(PAL) crude-pored microspherical silica cross-linked enzyme aggregates immobilization enzyme |
url |
http://xuebao.hebust.edu.cn/hbkjdx/ch/reader/create_pdf.aspx?file_no=b201505016&flag=1&journal_ |
work_keys_str_mv |
AT jiandongcui preparationofcrosslinkedenzymeaggregateswithcrudeporedmicrosphericalsilicacore AT yaminzhao preparationofcrosslinkedenzymeaggregateswithcrudeporedmicrosphericalsilicacore AT lianlianli preparationofcrosslinkedenzymeaggregateswithcrudeporedmicrosphericalsilicacore |
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