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Characterization of Biodegradable Films Based on Salvia hispanica L. Protein and Mucilage

  • M. I. Capitanid, e(Author)
    ,
  • A. Matus-Bastoa(Author)
    ,
  • ,
  • J. L. Santiago-Garcíac(Author)
    ,
  • D. A. Betancur-Anconaa(Author)
    ,
  • S. M. Nolascod(Author)
  • aUniversidad Autonoma de Yucatan
    ,
  • bInstituto Tecnológico de Mérida
    ,
  • cCentro de Investigacion Cientifica de Yucatan
    ,
  • dUniversidad Nacional del Centro de la Provincia de Buenos Aires
    ,
  • eUniversidad Nacional de La Plata (UNLP)
Research Output: Contribution to journal Article Peer-review

Open access

Publication Information

Output type

Research Output: Contribution to journal Article Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 1276-1286 (11 pages)

Journal (Volume, Issue Number)

Food and Bioprocess Technology (Volume 9, Issue 8)

Publication milestones

  • Published - 01/08/2016

Publication status

Published - 01/08/2016

ISSN

1935-5130

External Publication IDs

  • Scopus: 84961208088

Abstract

Biodegradable films of chia by-products (mucilage and protein-rich fraction (PF)) incorporated with clove essential oil (CEO) were obtained and characterized. The effects of polymer concentration (PC; 1.0–3.0 %, w/v) and CEO concentration (0.1–1.0 %, v/v) were evaluated as well as the pH (7–10), using a 23 factorial design with four central points. The films exhibited moisture values between 11.6 and 52.1 % (d.b.), which decreased (p < 0.05) with increasing PC and CEO. The thickness of the films increased (p < 0.05) with increasing PC. PC and pH influenced (p < 0.05) the lightness (L) and variation in color between red and green (a). The orientation of the color to yellow-blue hues (b) decreased significantly (p < 0.05) with increasing PC. Transparency was significantly lower and higher (p < 0.05) than PC and CEO, respectively. The film surface morphology was evaluated using atomic force miscrocope images, and thermogravimetric analysis (TGA) was performed to study the thermal stability of the films. The displacement and tensile strength were significantly lower (p < 0.05) at higher concentrations of CEO, this variable being the only one with a significant effect. The chemical composition of the films was confirmed utilizing Fourier transform infrared (FTIR) spectroscopy. The proportion of CEO added to the films had a significant influence on antimicrobial activity, inhibiting the growth of both Escherichia coli and Staphylococcus aureus.