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Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries

Strawberries are valuable because of their nutritional value, but they are also highly perishable fruits. Fungal decay is the overriding factor that alters the overall quality of fresh strawberries. Because no hygienic treatments to reduce the initial microbial load are feasible, molds develop durin...

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Autores principales: Heras-Mozos, Raquel, García-Moreno, Adrián, Monedero-Prieto, María, Tone, Ana Maria, Higueras, Laura, Hernández-Muñoz, Pilar, Gavara, Rafael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470944/
https://www.ncbi.nlm.nih.gov/pubmed/34574274
http://dx.doi.org/10.3390/foods10092166
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author Heras-Mozos, Raquel
García-Moreno, Adrián
Monedero-Prieto, María
Tone, Ana Maria
Higueras, Laura
Hernández-Muñoz, Pilar
Gavara, Rafael
author_facet Heras-Mozos, Raquel
García-Moreno, Adrián
Monedero-Prieto, María
Tone, Ana Maria
Higueras, Laura
Hernández-Muñoz, Pilar
Gavara, Rafael
author_sort Heras-Mozos, Raquel
collection PubMed
description Strawberries are valuable because of their nutritional value, but they are also highly perishable fruits. Fungal decay is the overriding factor that alters the overall quality of fresh strawberries. Because no hygienic treatments to reduce the initial microbial load are feasible, molds develop during postharvest when using conventional packaging. In this study, an antifungal packaging system for strawberries was developed to improve safety and quality. Trans-2-hexenal (HXAL), a natural compound in strawberries, was incorporated into the modified atmosphere packaging (MAP) systems. Zero, 100, and 250 µL of HXAL were included in cellulosic pads and were covered with a polyamide coating to control its release. The pads were placed on the bottom of plastic trays; an amount of250 g of strawberries was added, flow packed in micro-perforated PP bags, and stored at 4 °C for 14 days. Fungal infection was monitored during the storage period, and the optical and textural properties of the strawberries were measured at days 0 and 14. Analysis of the package headspace was conducted to check for the HXAL concentration. HXAL was partially retained in the fruits and was converted into hexyl acetate and 2-hexen-1-ol acetate, but this was only measurably present in the headspace of the active systems. Mold growth was fully inhibited in active packaging although the strawberries were softer and darker than those in the control packages. The active package was not as efficient if the fruits were stored under thermal-abuse conditions (15 and 22 °C).
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spelling pubmed-84709442021-09-27 Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries Heras-Mozos, Raquel García-Moreno, Adrián Monedero-Prieto, María Tone, Ana Maria Higueras, Laura Hernández-Muñoz, Pilar Gavara, Rafael Foods Article Strawberries are valuable because of their nutritional value, but they are also highly perishable fruits. Fungal decay is the overriding factor that alters the overall quality of fresh strawberries. Because no hygienic treatments to reduce the initial microbial load are feasible, molds develop during postharvest when using conventional packaging. In this study, an antifungal packaging system for strawberries was developed to improve safety and quality. Trans-2-hexenal (HXAL), a natural compound in strawberries, was incorporated into the modified atmosphere packaging (MAP) systems. Zero, 100, and 250 µL of HXAL were included in cellulosic pads and were covered with a polyamide coating to control its release. The pads were placed on the bottom of plastic trays; an amount of250 g of strawberries was added, flow packed in micro-perforated PP bags, and stored at 4 °C for 14 days. Fungal infection was monitored during the storage period, and the optical and textural properties of the strawberries were measured at days 0 and 14. Analysis of the package headspace was conducted to check for the HXAL concentration. HXAL was partially retained in the fruits and was converted into hexyl acetate and 2-hexen-1-ol acetate, but this was only measurably present in the headspace of the active systems. Mold growth was fully inhibited in active packaging although the strawberries were softer and darker than those in the control packages. The active package was not as efficient if the fruits were stored under thermal-abuse conditions (15 and 22 °C). MDPI 2021-09-13 /pmc/articles/PMC8470944/ /pubmed/34574274 http://dx.doi.org/10.3390/foods10092166 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Heras-Mozos, Raquel
García-Moreno, Adrián
Monedero-Prieto, María
Tone, Ana Maria
Higueras, Laura
Hernández-Muñoz, Pilar
Gavara, Rafael
Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title_full Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title_fullStr Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title_full_unstemmed Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title_short Trans-2-Hexenal-Based Antifungal Packaging to Extend the Shelf Life of Strawberries
title_sort trans-2-hexenal-based antifungal packaging to extend the shelf life of strawberries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470944/
https://www.ncbi.nlm.nih.gov/pubmed/34574274
http://dx.doi.org/10.3390/foods10092166
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