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Title: | Prediction of Carbohydrate-Protein Interaction in Cassava Starch-Casein Blended Edible Films |
Authors: | Lindriati, Triana Herlina, Herlina Nafi, Ahmad Praptiningsih, Yhulia |
Keywords: | Edible film interaction cassava starch casein tensile strength percentage elongation FTIR |
Issue Date: | 6-Feb-2018 |
Abstract: | The aim of this research was to study protein-carbohydrate interaction in edible films. Edible films were made from a blend of cassava starch and casein. Tensile Strength (TS), percentage elongation (%E) and Solubility (S) were observed to study their inter-relationships. Fourier Transform Infra Red (FTIR) Spectroscopy was used to monitor the molecular interactions. Interaction of carbohydrate and protein was studied at pH of 4, 7 and 9 and various casein percentages (0, 20, 40, 60, 80 and 100%, respectively). Increasing the casein ratio decreased %E and S but improved TS. Improving the %E decreased the TS and S when pH was increased (p<0.05). FTIR spectra of the samples at 100% cassava showed there were changes in intensity at 3400-3600 cm -1 with the changes in pH and the lowest occured at pH 7. FTIR spectra of 100% casein films showed that intensity was increased by increasing the pH and the lowest intensity was at pH 4. The FTIR spectra of films from a blend of cassava starch-casein showed an absorbtion band similar to cassava starch films in the range 1200-1000 cm -1 and similar to casein films in the range 1700-1500 cm -1 . Highest interaction between cassava starch and casein molecules occurred at pH 9 in all cases. At 3600-2800 cm -1 it was the 60% casein films. In the region 1700-1500 cm -1 it was the 80% casein films and in the range 1200-1000 cm -1 was the 20% casein films. Presumable optimum interaction of carbohydrate-protein occurred at pH 9. |
Description: | Advance Journal of Food Science and Technology 13(7): 272-278 2017 |
URI: | http://repository.unej.ac.id/handle/123456789/84156 |
ISSN: | 2042-4868 |
Appears in Collections: | LSP-Jurnal Ilmiah Dosen |
Files in This Item:
File | Description | Size | Format | |
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F. TP_Jurnal_Herlina_Prediction of Carbohydrate-Protein.pdf | 687.13 kB | Adobe PDF | View/Open |
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