Pinto Ramos Daniel, Sarjinsky Sharon, Alizadehgiashi Moien, Möbus Juri, Kumacheva Eugenia
Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.
Suncayr, Ltd., 2660 Speakman Drive, Mississauga, Ontario L5K 2L1, Canada.
ACS Omega. 2019 May 22;4(5):8795-8803. doi: 10.1021/acsomega.9b00251. eCollection 2019 May 31.
Composite films of proteins and polysaccharides have a broad range of biomedical and food packaging applications, in which they are frequently exposed to fluid environments with varying ionic strengths. In the present work, we report the behavior of biopolymer films derived from chitosan (Ch), gelatin (GEL), and Ch/GEL mixture in salt solutions with varying concentrations and ion charges. The swelling and dissolution of the Ch films reduced with increasing salt concentration due to the polyelectrolyte behavior of this biopolymer, while the GEL films displayed a polyampholyte behavior, in which film swelling and dissolution were enhanced in salt solutions. Composite Ch/GEL films followed the behavior of GEL. The release of small ionic and zwitter-ionic molecules from the films was enhanced in ionic solutions due to the screened attraction between these molecules and the polymer matrix. These results provide insight into the behavior of protein/polysaccharide films in varying ionic environments, thus enabling enhanced design of biomaterials for a broad range of applications.
蛋白质和多糖复合膜在生物医学和食品包装领域有广泛应用,在此类应用中它们常暴露于具有不同离子强度的流体环境中。在本研究中,我们报告了壳聚糖(Ch)、明胶(GEL)以及Ch/GEL混合物制成的生物聚合物膜在不同浓度和离子电荷的盐溶液中的行为。由于这种生物聚合物的聚电解质行为,Ch膜的溶胀和溶解随盐浓度的增加而降低,而GEL膜表现出聚两性电解质行为,即在盐溶液中膜的溶胀和溶解增强。复合Ch/GEL膜遵循GEL的行为。由于这些分子与聚合物基质之间的屏蔽吸引力,离子溶液中薄膜中小离子和两性离子分子的释放增强。这些结果为蛋白质/多糖膜在不同离子环境中的行为提供了见解,从而有助于为广泛应用增强生物材料的设计。