This study aimed at Candida rugosa lipase immobilization on a low-cost and readily available support. Among agro-industrial crops, hemp tea waste was chosen as the carrier because it provides higher immobilization performance than hemp flower and leaf wastes. Support characterization by ATR-FTIR, SEM and elemental analysis and the optimization of the adsorption immobilization process were performed. The lipase adsorption immobilization was obtained by soaking the support with hexane under mild agitation for 2 h and a successively incubating the enzyme for 1 h at room temperature without removing the solvent. The esterification of oleic acid with n-decanol was tested in a solvent-free system by studying some parameters that influence the reaction, such as the substrates molar ratio, the lipase activity/oleic acid ratio, reaction temperature and the presence/absence of molecular sieves. The biocatalyst showed the ability to bring the esterification reaction to equilibrium under 60 min and good reusability (maintaining 60 % of its original activity after three successive esterification reactions) but low conversion (21 %) at the optimized conditions (40 °C, 1:2 substrates molar ratio, 0.56 lipase/oleic acid ratio, without sieves). Comparing the results with those obtained by free lipase form at the same activity (1 U) and experimental conditions, slightly higher conversion (%) appeared for the free lipase. All this highlighted that probably the source of lipase for its carbohydrate-binding pocket and lid structure affected the esterification of oleic acid but certainly, the immobilization didn’t induce any lipase conformational change also allowing the reuse of the catalytic material.

Investigation on solvent-free esterification of oleic acid by hemp tea waste-immobilized Candida rugosa lipase / Chiappini, Viviana; Casbarra, Debora; Astolfi, Maria Luisa; Girelli, Anna Maria. - In: JOURNAL OF BIOTECHNOLOGY. - ISSN 0168-1656. - (2024). [10.1016/j.jbiotec.2024.07.001]

Investigation on solvent-free esterification of oleic acid by hemp tea waste-immobilized Candida rugosa lipase

Viviana Chiappini
Primo
;
Debora Casbarra;Maria Luisa Astolfi;Anna Maria Girelli
2024

Abstract

This study aimed at Candida rugosa lipase immobilization on a low-cost and readily available support. Among agro-industrial crops, hemp tea waste was chosen as the carrier because it provides higher immobilization performance than hemp flower and leaf wastes. Support characterization by ATR-FTIR, SEM and elemental analysis and the optimization of the adsorption immobilization process were performed. The lipase adsorption immobilization was obtained by soaking the support with hexane under mild agitation for 2 h and a successively incubating the enzyme for 1 h at room temperature without removing the solvent. The esterification of oleic acid with n-decanol was tested in a solvent-free system by studying some parameters that influence the reaction, such as the substrates molar ratio, the lipase activity/oleic acid ratio, reaction temperature and the presence/absence of molecular sieves. The biocatalyst showed the ability to bring the esterification reaction to equilibrium under 60 min and good reusability (maintaining 60 % of its original activity after three successive esterification reactions) but low conversion (21 %) at the optimized conditions (40 °C, 1:2 substrates molar ratio, 0.56 lipase/oleic acid ratio, without sieves). Comparing the results with those obtained by free lipase form at the same activity (1 U) and experimental conditions, slightly higher conversion (%) appeared for the free lipase. All this highlighted that probably the source of lipase for its carbohydrate-binding pocket and lid structure affected the esterification of oleic acid but certainly, the immobilization didn’t induce any lipase conformational change also allowing the reuse of the catalytic material.
2024
Lipase immobilized; hemp waste support; adsorption; decyl oleate synthesis
01 Pubblicazione su rivista::01a Articolo in rivista
Investigation on solvent-free esterification of oleic acid by hemp tea waste-immobilized Candida rugosa lipase / Chiappini, Viviana; Casbarra, Debora; Astolfi, Maria Luisa; Girelli, Anna Maria. - In: JOURNAL OF BIOTECHNOLOGY. - ISSN 0168-1656. - (2024). [10.1016/j.jbiotec.2024.07.001]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1715857
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