Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications

This PhD dissertation focuses on the development of renewable and biodegradable active films based on chemically-modified wheat gliadin proteins endowed with antimicrobial capacity owing to the incorporation of naturally-occurring bioactive compounds, namely cinnamaldehyde, natamycin, and lysozy...

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Main Author: Balaguer Grimaldo, María de la Paz
Other Authors: Gavara Clemente, Rafael José
Format: Doctoral Thesis
Language:English
Published: Universitat Politècnica de València 2017
Subjects:
Online Access:http://hdl.handle.net/10251/48520
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spelling ndltd-upv.es-oai-riunet.upv.es-10251-485202020-12-02T20:21:59Z Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications Balaguer Grimaldo, María de la Paz Gavara Clemente, Rafael José Hernandez Muñoz, Maria Pilar Universitat Politècnica de València. Instituto Universitario de Ingeniería de Alimentos para el Desarrollo - Institut Universitari d'Enginyeria d'Aliments per al Desenvolupament Bioplastic Antimicrobial Antifungal Packaging Films Active Food Shelf-life Compostable Biodegradable Release Cinnamaldehyde TECNOLOGIA DE ALIMENTOS This PhD dissertation focuses on the development of renewable and biodegradable active films based on chemically-modified wheat gliadin proteins endowed with antimicrobial capacity owing to the incorporation of naturally-occurring bioactive compounds, namely cinnamaldehyde, natamycin, and lysozyme. Gliadin proteins were treated with cinnamaldehyde at acidic pH and films were produced by casting. The resulting protein-based films presented improved functional properties (mechanical, barrier, and water resistance), and biochemical evidence of the formation of a more compact network whose degree of cross-linking increased with the amount of cinnamaldehyde incorporated into the gliadin-ethanolic solution. Free cinnamaldehyde not participating in the cross-linked reaction remained entrapped in the protein matrix at low relative humidity conditions. The sensitivity of the films to moisture owing to the hydrophilic character of gliadins provided a trigger and control mechanism for the release of cinnamaldehyde in moderate and high relative humidity environments, similar to conditions occurring in packaged food products. The antimicrobial properties of the films developed were tested in vitro by vapor diffusion assays against common food spoilage fungi (Penicillium expansum and Aspergillus niger), showing great effectiveness. Application of these active films to the preservation of two foodstuffs, sliced bread and cheese spread, gave promising results, lengthening fungal growth lag phase and minimizing fungal growth extension. Balaguer Grimaldo, MDLP. (2015). Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications [Tesis doctoral no publicada]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/48520 TESIS Premiado 2017-01-21 info:eu-repo/semantics/doctoralThesis info:eu-repo/semantics/acceptedVersion http://hdl.handle.net/10251/48520 10.4995/Thesis/10251/48520 eng http://rightsstatements.org/vocab/InC/1.0/ info:eu-repo/semantics/openAccess Universitat Politècnica de València
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Bioplastic
Antimicrobial
Antifungal
Packaging
Films
Active
Food
Shelf-life
Compostable
Biodegradable
Release
Cinnamaldehyde
TECNOLOGIA DE ALIMENTOS
spellingShingle Bioplastic
Antimicrobial
Antifungal
Packaging
Films
Active
Food
Shelf-life
Compostable
Biodegradable
Release
Cinnamaldehyde
TECNOLOGIA DE ALIMENTOS
Balaguer Grimaldo, María de la Paz
Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
description This PhD dissertation focuses on the development of renewable and biodegradable active films based on chemically-modified wheat gliadin proteins endowed with antimicrobial capacity owing to the incorporation of naturally-occurring bioactive compounds, namely cinnamaldehyde, natamycin, and lysozyme. Gliadin proteins were treated with cinnamaldehyde at acidic pH and films were produced by casting. The resulting protein-based films presented improved functional properties (mechanical, barrier, and water resistance), and biochemical evidence of the formation of a more compact network whose degree of cross-linking increased with the amount of cinnamaldehyde incorporated into the gliadin-ethanolic solution. Free cinnamaldehyde not participating in the cross-linked reaction remained entrapped in the protein matrix at low relative humidity conditions. The sensitivity of the films to moisture owing to the hydrophilic character of gliadins provided a trigger and control mechanism for the release of cinnamaldehyde in moderate and high relative humidity environments, similar to conditions occurring in packaged food products. The antimicrobial properties of the films developed were tested in vitro by vapor diffusion assays against common food spoilage fungi (Penicillium expansum and Aspergillus niger), showing great effectiveness. Application of these active films to the preservation of two foodstuffs, sliced bread and cheese spread, gave promising results, lengthening fungal growth lag phase and minimizing fungal growth extension. === Balaguer Grimaldo, MDLP. (2015). Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications [Tesis doctoral no publicada]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/48520 === TESIS === Premiado
author2 Gavara Clemente, Rafael José
author_facet Gavara Clemente, Rafael José
Balaguer Grimaldo, María de la Paz
author Balaguer Grimaldo, María de la Paz
author_sort Balaguer Grimaldo, María de la Paz
title Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
title_short Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
title_full Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
title_fullStr Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
title_full_unstemmed Development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
title_sort development of active bioplastics based on wheat proteins and natural antimicrobials for food packaging applications
publisher Universitat Politècnica de València
publishDate 2017
url http://hdl.handle.net/10251/48520
work_keys_str_mv AT balaguergrimaldomariadelapaz developmentofactivebioplasticsbasedonwheatproteinsandnaturalantimicrobialsforfoodpackagingapplications
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