Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix

The current demands of the world’s biotechnological industries are enhancement of enzyme productivity and development of novel techniques for increasing their shelf life to facilitate large scale and economic formulation. Immobilization of lipase by adsorption onto solids surfaces such as polymers1,...

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Main Authors: Golbaha, Noorulsyahidaini, Endud, Salasiah, Ramli, Zainab, Lintang, Hendrik Oktendy
Format: Conference or Workshop Item
Language:English
Published: 2014
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Online Access:http://eprints.utm.my/id/eprint/60838/1/SalasiahEndud2014_OptimalConditionsfortheImmobilizationofLipase.pdf
http://eprints.utm.my/id/eprint/60838/
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spelling my.utm.608382017-10-19T00:30:35Z http://eprints.utm.my/id/eprint/60838/ Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix Golbaha, Noorulsyahidaini Endud, Salasiah Ramli, Zainab Lintang, Hendrik Oktendy QD Chemistry The current demands of the world’s biotechnological industries are enhancement of enzyme productivity and development of novel techniques for increasing their shelf life to facilitate large scale and economic formulation. Immobilization of lipase by adsorption onto solids surfaces such as polymers1, silica2 and clay3 led to improved performance of the enzyme. This paper reported on lipase from candida rugosa immobilized in nanosilica KIT-6, in which the unique properties of KIT-6 including high surface areas, modifiable surface, and tunable pore sizes were utilized to improve the enzyme activity in hydrolysis of olive oil. The immobilization of lipase in the KIT-6 matrix was found to generate synergistic effects that enhanced enzyme stability, improved product selectivity, and facilitated separation and enzyme reuse. Lipase immobilization onto KIT-6 was optimized by varying synthesis parameters such as temperature (4-60 °C), pH (4-9 pH) and solid-liquid ratio of the enzyme solutions (0.03-0.5). The optimal immobilization conditions were pH 7.0 at 37°C and solid to liquid ratio 0.2 (v/v). Based on the enzyme activity, the immobilized lipase in nanosilica KIT-6 displayed higher operational stability than free lipase, including wider thermal and pH ranges. 2014 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/60838/1/SalasiahEndud2014_OptimalConditionsfortheImmobilizationofLipase.pdf Golbaha, Noorulsyahidaini and Endud, Salasiah and Ramli, Zainab and Lintang, Hendrik Oktendy (2014) Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix. In: 27th Regional Symposium of Malaysia Analytical Sciences (SKAM27) 2014, 8-10 Dec, 2014, Johor Bahru, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QD Chemistry
spellingShingle QD Chemistry
Golbaha, Noorulsyahidaini
Endud, Salasiah
Ramli, Zainab
Lintang, Hendrik Oktendy
Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
description The current demands of the world’s biotechnological industries are enhancement of enzyme productivity and development of novel techniques for increasing their shelf life to facilitate large scale and economic formulation. Immobilization of lipase by adsorption onto solids surfaces such as polymers1, silica2 and clay3 led to improved performance of the enzyme. This paper reported on lipase from candida rugosa immobilized in nanosilica KIT-6, in which the unique properties of KIT-6 including high surface areas, modifiable surface, and tunable pore sizes were utilized to improve the enzyme activity in hydrolysis of olive oil. The immobilization of lipase in the KIT-6 matrix was found to generate synergistic effects that enhanced enzyme stability, improved product selectivity, and facilitated separation and enzyme reuse. Lipase immobilization onto KIT-6 was optimized by varying synthesis parameters such as temperature (4-60 °C), pH (4-9 pH) and solid-liquid ratio of the enzyme solutions (0.03-0.5). The optimal immobilization conditions were pH 7.0 at 37°C and solid to liquid ratio 0.2 (v/v). Based on the enzyme activity, the immobilized lipase in nanosilica KIT-6 displayed higher operational stability than free lipase, including wider thermal and pH ranges.
format Conference or Workshop Item
author Golbaha, Noorulsyahidaini
Endud, Salasiah
Ramli, Zainab
Lintang, Hendrik Oktendy
author_facet Golbaha, Noorulsyahidaini
Endud, Salasiah
Ramli, Zainab
Lintang, Hendrik Oktendy
author_sort Golbaha, Noorulsyahidaini
title Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
title_short Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
title_full Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
title_fullStr Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
title_full_unstemmed Optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
title_sort optimal conditions for the immobilization of lipase in nanosilica kit-6 matrix
publishDate 2014
url http://eprints.utm.my/id/eprint/60838/1/SalasiahEndud2014_OptimalConditionsfortheImmobilizationofLipase.pdf
http://eprints.utm.my/id/eprint/60838/
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score 13.160551