International Journal of Biological Macromolecules, Journal Year: 2024, Volume and Issue: 292, P. 139251 - 139251
Published: Dec. 26, 2024
Language: Английский
International Journal of Biological Macromolecules, Journal Year: 2024, Volume and Issue: 292, P. 139251 - 139251
Published: Dec. 26, 2024
Language: Английский
International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: 304, P. 140811 - 140811
Published: Feb. 12, 2025
Language: Английский
Citations
5Journal of Colloid and Interface Science, Journal Year: 2025, Volume and Issue: 685, P. 1087 - 1098
Published: Jan. 23, 2025
Language: Английский
Citations
4Journal of Controlled Release, Journal Year: 2025, Volume and Issue: 379, P. 524 - 536
Published: Jan. 21, 2025
Language: Английский
Citations
3International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: 304, P. 140774 - 140774
Published: Feb. 10, 2025
Language: Английский
Citations
0International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: 308, P. 142301 - 142301
Published: March 24, 2025
Language: Английский
Citations
0Gels, Journal Year: 2025, Volume and Issue: 11(4), P. 236 - 236
Published: March 24, 2025
Growing concerns over the environmental impact of plastic packaging have driven interest in sustainable alternatives, particularly biopolymer-based films. This study developed ternary-blended polysaccharide gel films composed carboxymethyl starch (CMS), chitosan (CS), and pectin (PT), with dialdehyde cellulose (DCMC) as a crosslinker, investigated effects honey bee brood protein (BBP) (0–0.4% w/v) on their mechanical, barrier, thermal properties. A completely randomized design (CRD) was employed to evaluate BBP concentration film characteristics. Results demonstrated that adding 0.4% enhanced water vapor barrier properties stability while reducing hydrophilicity. The optimal formulation observed at 0.1% BBP, providing highest tensile strength (7.73 MPa), elongation break (32.23%), water-absorption capacity (369.01%). improvements hydrophilicity were attributed BBP’s hydrophobic amino acids, which interacted DCMC form denser polymer network, enhancing structural integrity moisture resistance. Additionally, incorporation contributed biodegradability films, improving sustainability compared conventional biopolymers. findings suggest can serve functional additive polysaccharide-based balancing performance eco-friendliness for applications biodegradable food medical packaging.
Language: Английский
Citations
0Advances in Colloid and Interface Science, Journal Year: 2025, Volume and Issue: unknown, P. 103496 - 103496
Published: March 1, 2025
Language: Английский
Citations
0Carbohydrate Polymers, Journal Year: 2025, Volume and Issue: unknown, P. 123534 - 123534
Published: March 1, 2025
Language: Английский
Citations
0International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: unknown, P. 142528 - 142528
Published: March 1, 2025
Language: Английский
Citations
0International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: unknown, P. 143205 - 143205
Published: April 1, 2025
Language: Английский
Citations
0