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Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food

Chitosan is receiving increasing attention from the food industry for being a biodegradable, non-toxic, antimicrobial biopolymer able to extend the shelf life of, and preserve the quality of, fresh food. However, few studies have investigated the ability of chitosan-based coatings to allow the diffu...

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Autores principales: Tampucci, Silvia, Castagna, Antonella, Monti, Daniela, Manera, Clementina, Saccomanni, Giuseppe, Chetoni, Patrizia, Zucchetti, Erica, Barbagallo, Mariacristina, Fazio, Laura, Santin, Marco, Ranieri, Annamaria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915486/
https://www.ncbi.nlm.nih.gov/pubmed/33557256
http://dx.doi.org/10.3390/foods10020335
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author Tampucci, Silvia
Castagna, Antonella
Monti, Daniela
Manera, Clementina
Saccomanni, Giuseppe
Chetoni, Patrizia
Zucchetti, Erica
Barbagallo, Mariacristina
Fazio, Laura
Santin, Marco
Ranieri, Annamaria
author_facet Tampucci, Silvia
Castagna, Antonella
Monti, Daniela
Manera, Clementina
Saccomanni, Giuseppe
Chetoni, Patrizia
Zucchetti, Erica
Barbagallo, Mariacristina
Fazio, Laura
Santin, Marco
Ranieri, Annamaria
author_sort Tampucci, Silvia
collection PubMed
description Chitosan is receiving increasing attention from the food industry for being a biodegradable, non-toxic, antimicrobial biopolymer able to extend the shelf life of, and preserve the quality of, fresh food. However, few studies have investigated the ability of chitosan-based coatings to allow the diffusion of bioactive compounds into the food matrix to improve its nutraceutical quality. This research is aimed at testing whether a hydrophilic molecule (tyrosol) could diffuse from the chitosan-tyrosol coating and cross the tomato peel. To this end, in vitro permeation tests using excised tomato peel and an in vivo application of chitosan-tyrosol coating on tomato fruit, followed by tyrosol quantification in intact fruit, peel and flesh during a seven-day storage at room temperature, were performed. Both approaches demonstrated the ability of tyrosol to permeate across the fruit peel. Along with a decreased tyrosol content in the peel, its concentration within the flesh was increased, indicating an active transfer of tyrosol into this tissue. This finding, together with the maintenance of constant tyrosol levels during the seven-day storage period, is very promising for the use of chitosan formulations to produce functional tomato fruit.
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spelling pubmed-79154862021-03-01 Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food Tampucci, Silvia Castagna, Antonella Monti, Daniela Manera, Clementina Saccomanni, Giuseppe Chetoni, Patrizia Zucchetti, Erica Barbagallo, Mariacristina Fazio, Laura Santin, Marco Ranieri, Annamaria Foods Article Chitosan is receiving increasing attention from the food industry for being a biodegradable, non-toxic, antimicrobial biopolymer able to extend the shelf life of, and preserve the quality of, fresh food. However, few studies have investigated the ability of chitosan-based coatings to allow the diffusion of bioactive compounds into the food matrix to improve its nutraceutical quality. This research is aimed at testing whether a hydrophilic molecule (tyrosol) could diffuse from the chitosan-tyrosol coating and cross the tomato peel. To this end, in vitro permeation tests using excised tomato peel and an in vivo application of chitosan-tyrosol coating on tomato fruit, followed by tyrosol quantification in intact fruit, peel and flesh during a seven-day storage at room temperature, were performed. Both approaches demonstrated the ability of tyrosol to permeate across the fruit peel. Along with a decreased tyrosol content in the peel, its concentration within the flesh was increased, indicating an active transfer of tyrosol into this tissue. This finding, together with the maintenance of constant tyrosol levels during the seven-day storage period, is very promising for the use of chitosan formulations to produce functional tomato fruit. MDPI 2021-02-04 /pmc/articles/PMC7915486/ /pubmed/33557256 http://dx.doi.org/10.3390/foods10020335 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tampucci, Silvia
Castagna, Antonella
Monti, Daniela
Manera, Clementina
Saccomanni, Giuseppe
Chetoni, Patrizia
Zucchetti, Erica
Barbagallo, Mariacristina
Fazio, Laura
Santin, Marco
Ranieri, Annamaria
Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title_full Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title_fullStr Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title_full_unstemmed Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title_short Tyrosol-Enriched Tomatoes by Diffusion across the Fruit Peel from a Chitosan Coating: A Proposal of Functional Food
title_sort tyrosol-enriched tomatoes by diffusion across the fruit peel from a chitosan coating: a proposal of functional food
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915486/
https://www.ncbi.nlm.nih.gov/pubmed/33557256
http://dx.doi.org/10.3390/foods10020335
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