Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads

Enzymes serve as biocatalysts for innumerable important reactions, however, their application has limitations, which can in many cases be overcome by using appropriate immobilization strategies. Here, a new support for immobilizing enzymes is proposed. This hybrid organic-inorganic support is compos...

Full description

Bibliographic Details
Main Authors: Ana D. Q. Melo, Francisco F. M. Silva, José C. S. dos Santos, Roberto Fernández-Lafuente, Telma L. G. Lemos, Francisco A. Dias Filho
Format: Article
Language:English
Published: MDPI AG 2017-12-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/22/12/2165
id doaj-3dace6ff752549c0a1ab23cbd79f042c
record_format Article
spelling doaj-3dace6ff752549c0a1ab23cbd79f042c2020-11-25T00:53:32ZengMDPI AGMolecules1420-30492017-12-012212216510.3390/molecules22122165molecules22122165Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate BeadsAna D. Q. Melo0Francisco F. M. Silva1José C. S. dos Santos2Roberto Fernández-Lafuente3Telma L. G. Lemos4Francisco A. Dias Filho5Instituto Federal de Educação, Ciência e Tecnologia do Ceará, Rod. Pres. Juscelino Kubitschek, Boa Viagem CEP 63870-000, Ceará, BrazilInstituto Federal de Educação, Ciência e Tecnologia do Rio Grande do Norte, RN 233, Km-02, Nº 999, Bairro Chapada do Apodi, Apodi CEP 59700-000, Rio Grande do Norte, BrazilInstituto de Engenharias e Desenvolvimento Sustentável, Universidade da Integração Internacional da Lusofonia Afro-Brasileira, Redenção CEP 62785-000, Ceará, BrazilDepartment of Biocatalysis, ICP-CSIC, Campus UAM-CSIC, Cantoblanco, 28049 Madrid, SpainDepartamento de Química Orgânica e Inorgânica da Universidade Federal do Ceará, Campus do Pici, Bloco 940, Fortaleza CEP 60455-760, Ceará, BrazilDepartamento de Química Orgânica e Inorgânica da Universidade Federal do Ceará, Campus do Pici, Bloco 940, Fortaleza CEP 60455-760, Ceará, BrazilEnzymes serve as biocatalysts for innumerable important reactions, however, their application has limitations, which can in many cases be overcome by using appropriate immobilization strategies. Here, a new support for immobilizing enzymes is proposed. This hybrid organic-inorganic support is composed of chitosan—a natural, nontoxic, biodegradable, and edible biopolymer—and sodium polyphosphate as the inorganic component. Lipase B from Candida antarctica (CALB) was immobilized on microspheres by encapsulation using these polymers. The characterization of the composites (by infrared spectroscopy, thermogravimetric analysis, and confocal Raman microscopy) confirmed the hybrid nature of the support, whose external part consisted of polyphosphate and core was composed of chitosan. The immobilized enzyme had the following advantages: possibility of enzyme reuse, easy biocatalyst recovery, increased resistance to variations in temperature (activity declined from 60 °C and the enzyme was inactivated at 80 °C), and increased catalytic activity in the transesterification reactions. The encapsulated enzymes were utilized as biocatalysts for transesterification reactions to produce the compound responsible for the aroma of jasmine.https://www.mdpi.com/1420-3049/22/12/2165chitosanpolyphosphatemicrospheresimmobilizationlipaseCALB
collection DOAJ
language English
format Article
sources DOAJ
author Ana D. Q. Melo
Francisco F. M. Silva
José C. S. dos Santos
Roberto Fernández-Lafuente
Telma L. G. Lemos
Francisco A. Dias Filho
spellingShingle Ana D. Q. Melo
Francisco F. M. Silva
José C. S. dos Santos
Roberto Fernández-Lafuente
Telma L. G. Lemos
Francisco A. Dias Filho
Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
Molecules
chitosan
polyphosphate
microspheres
immobilization
lipase
CALB
author_facet Ana D. Q. Melo
Francisco F. M. Silva
José C. S. dos Santos
Roberto Fernández-Lafuente
Telma L. G. Lemos
Francisco A. Dias Filho
author_sort Ana D. Q. Melo
title Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
title_short Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
title_full Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
title_fullStr Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
title_full_unstemmed Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads
title_sort synthesis of benzyl acetate catalyzed by lipase immobilized in nontoxic chitosan-polyphosphate beads
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2017-12-01
description Enzymes serve as biocatalysts for innumerable important reactions, however, their application has limitations, which can in many cases be overcome by using appropriate immobilization strategies. Here, a new support for immobilizing enzymes is proposed. This hybrid organic-inorganic support is composed of chitosan—a natural, nontoxic, biodegradable, and edible biopolymer—and sodium polyphosphate as the inorganic component. Lipase B from Candida antarctica (CALB) was immobilized on microspheres by encapsulation using these polymers. The characterization of the composites (by infrared spectroscopy, thermogravimetric analysis, and confocal Raman microscopy) confirmed the hybrid nature of the support, whose external part consisted of polyphosphate and core was composed of chitosan. The immobilized enzyme had the following advantages: possibility of enzyme reuse, easy biocatalyst recovery, increased resistance to variations in temperature (activity declined from 60 °C and the enzyme was inactivated at 80 °C), and increased catalytic activity in the transesterification reactions. The encapsulated enzymes were utilized as biocatalysts for transesterification reactions to produce the compound responsible for the aroma of jasmine.
topic chitosan
polyphosphate
microspheres
immobilization
lipase
CALB
url https://www.mdpi.com/1420-3049/22/12/2165
work_keys_str_mv AT anadqmelo synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
AT franciscofmsilva synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
AT josecsdossantos synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
AT robertofernandezlafuente synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
AT telmalglemos synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
AT franciscoadiasfilho synthesisofbenzylacetatecatalyzedbylipaseimmobilizedinnontoxicchitosanpolyphosphatebeads
_version_ 1725237635420520448