Abstract |
Cutin is the biopolyester that protects the extracellular layer of terrestrial plants against dehydration and environmental stresses. In this work, cutin was extracted from tomato processing waste and cast into edible films having pectin as a binding agent. The influences of cutin/ pectin ratio (50/50 and 25/75), film-forming suspension pH, and casting method on phase dispersion, water resistance and affinity, and thermal and mechanical properties of films were investigated. Dynamic light scattering and scanning electron microscopy revealed that cutin phase aggregation was reduced by simply increasing pH. The 50/50 films obtained by casting neutral-pH suspensions presented uniform cutin dispersion within the pectin matrix. Consequently, these films exhibited lower water uptake and solubility than their acidic counterparts. The cutin/ pectin films developed here were shown to mimic tomato peel itself with respect to mechanical strength and thermal stability. Such behavior was found to be virtually independent of pH and casting method.
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Authors | Anny Manrich, Francys K V Moreira, Caio G Otoni, Marcos V Lorevice, Maria A Martins, Luiz H C Mattoso |
Journal | Carbohydrate polymers
(Carbohydr Polym)
Vol. 164
Pg. 83-91
(May 15 2017)
ISSN: 1879-1344 [Electronic] England |
PMID | 28325348
(Publication Type: Journal Article)
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Copyright | Copyright © 2017 Elsevier Ltd. All rights reserved. |
Chemical References |
- Membrane Lipids
- cutin
- Pectins
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Topics |
- Food Packaging
- Solanum lycopersicum
(chemistry)
- Membrane Lipids
(chemistry)
- Pectins
(chemistry)
- Solubility
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