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Synthesis of naringin 6"-ricinoleate using immobilized lipase

ABSTRACT: BACKGROUND: Naringin is an important flavanone with several biological activities, including antioxidant action. However, this compound shows low solubility in lipophilic preparations, such as is used in the cosmetic and food industries. One way to solve this problem is to add fatty acids...

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Autores principales: Almeida, Verônica M, Branco, Carla RC, Assis, Sandra A, Vieira, Ivo JC, Braz-Filho, Raimundo, Branco, Alexsandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374675/
https://www.ncbi.nlm.nih.gov/pubmed/22578215
http://dx.doi.org/10.1186/1752-153X-6-41
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author Almeida, Verônica M
Branco, Carla RC
Assis, Sandra A
Vieira, Ivo JC
Braz-Filho, Raimundo
Branco, Alexsandro
author_facet Almeida, Verônica M
Branco, Carla RC
Assis, Sandra A
Vieira, Ivo JC
Braz-Filho, Raimundo
Branco, Alexsandro
author_sort Almeida, Verônica M
collection PubMed
description ABSTRACT: BACKGROUND: Naringin is an important flavanone with several biological activities, including antioxidant action. However, this compound shows low solubility in lipophilic preparations, such as is used in the cosmetic and food industries. One way to solve this problem is to add fatty acids to the flavonoid sugar unit using immobilized lipase. However, there is limited research regarding hydroxylation of unsaturated fatty acids as an answer to the low solubility challenge. In this work, we describe the reaction of naringin with castor oil containing ricinoleic acid, castor oil's major fatty acid component, using immobilized lipase from Candida antarctica. Analysis of the (1)H and (13 )C NMR (1D and 2D) spectra and literature comparison were used to characterise the obtained acyl derivative. RESULTS: After allowing the reaction to continue for 120 hours (in acetone media, 50°C), the major product obtained was naringin 6″-ricinoleate. In this reaction, either castor oil or pure ricinoleic acid was used as the acylating agent, providing a 33% or 24% yield, respectively. The chemical structure of naringin 6″-ricinoleate was determined using NMR analysis, including bidimensional (2D) experiments. CONCLUSION: Using immobilized lipase from C. antarctica, the best conversion reaction was observed using castor oil containing ricinoleic acid as the acylating agent rather than an isolated fatty acid. GRAPHICAL ABSTRACT:
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spelling pubmed-33746752012-06-14 Synthesis of naringin 6"-ricinoleate using immobilized lipase Almeida, Verônica M Branco, Carla RC Assis, Sandra A Vieira, Ivo JC Braz-Filho, Raimundo Branco, Alexsandro Chem Cent J Research Article ABSTRACT: BACKGROUND: Naringin is an important flavanone with several biological activities, including antioxidant action. However, this compound shows low solubility in lipophilic preparations, such as is used in the cosmetic and food industries. One way to solve this problem is to add fatty acids to the flavonoid sugar unit using immobilized lipase. However, there is limited research regarding hydroxylation of unsaturated fatty acids as an answer to the low solubility challenge. In this work, we describe the reaction of naringin with castor oil containing ricinoleic acid, castor oil's major fatty acid component, using immobilized lipase from Candida antarctica. Analysis of the (1)H and (13 )C NMR (1D and 2D) spectra and literature comparison were used to characterise the obtained acyl derivative. RESULTS: After allowing the reaction to continue for 120 hours (in acetone media, 50°C), the major product obtained was naringin 6″-ricinoleate. In this reaction, either castor oil or pure ricinoleic acid was used as the acylating agent, providing a 33% or 24% yield, respectively. The chemical structure of naringin 6″-ricinoleate was determined using NMR analysis, including bidimensional (2D) experiments. CONCLUSION: Using immobilized lipase from C. antarctica, the best conversion reaction was observed using castor oil containing ricinoleic acid as the acylating agent rather than an isolated fatty acid. GRAPHICAL ABSTRACT: BioMed Central 2012-05-11 /pmc/articles/PMC3374675/ /pubmed/22578215 http://dx.doi.org/10.1186/1752-153X-6-41 Text en Copyright ©2012 Almeida et al
spellingShingle Research Article
Almeida, Verônica M
Branco, Carla RC
Assis, Sandra A
Vieira, Ivo JC
Braz-Filho, Raimundo
Branco, Alexsandro
Synthesis of naringin 6"-ricinoleate using immobilized lipase
title Synthesis of naringin 6"-ricinoleate using immobilized lipase
title_full Synthesis of naringin 6"-ricinoleate using immobilized lipase
title_fullStr Synthesis of naringin 6"-ricinoleate using immobilized lipase
title_full_unstemmed Synthesis of naringin 6"-ricinoleate using immobilized lipase
title_short Synthesis of naringin 6"-ricinoleate using immobilized lipase
title_sort synthesis of naringin 6"-ricinoleate using immobilized lipase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374675/
https://www.ncbi.nlm.nih.gov/pubmed/22578215
http://dx.doi.org/10.1186/1752-153X-6-41
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