Łupina Katarzyna, Kowalczyk Dariusz, Lis Magdalena, Basiura-Cembala Monika
Department of Biochemistry and Food Chemistry, Faculty of Food Sciences and Biotechnology, University of Life Sciences in Lublin, Skromna 8, 20-704 Lublin, Poland.
Department of Biomedicine and Environmental Research, Faculty of Natural Sciences and Health, The John Paul II Catholic University of Lublin, Konstantynów 1J, 20-708 Lublin, Poland.
Int J Biol Macromol. 2023 May 1;236:123945. doi: 10.1016/j.ijbiomac.2023.123945. Epub 2023 Mar 14.
Curcumin (CUR; 0, 0.005, 0.01, 0.02 %) was loaded into binary 75/25 blend films based on polysaccharides (carboxymethyl cellulose (CMC), gum Arabic (GAR), octenyl succinic anhydride modified starch (OSA), water-soluble soy polysaccharides (WSSP)) and gelatin (GEL). The GAR-based system was the least rough and, consequently, the most transparent of the films. An opposite result was found for the WSSP-based film. Despite the phase separation, the CMC75/GEL25 film exhibited excellent mechanical strength and stiffness. CUR improved the UV/VIS light-barrier characteristics of the films, but did not affect most of other physiochemical properties. X-ray diffractograms revealed that CUR provoked the rearrangement of the triple helical structure of GEL. As highly erodible, the CMC75/GEL25 carrier ensured the fastest and the most complete release of CUR. The OSA75/GEL25 system exhibited an opposite behavior. The kinetic profiles of the antiradical activity of the films did not reflect CUR release. A comparison of 2,2-diphenyl-1-picrylhydrazyl (DPPH*) scavenging on the plateau revealed that the CUR-supplemented films had quite comparable antiradical potential. The CMC75/GEL25 system exhibited the highest colorimetric stability, likely as a result of complete encapsulation of CUR in the GEL-rich microspheres. Weak symptoms of physical aging (enthalpy relaxation) were found in the films.
姜黄素(CUR;0、0.005%、0.01%、0.02%)被载入基于多糖(羧甲基纤维素(CMC)、阿拉伯胶(GAR)、辛烯基琥珀酸酐改性淀粉(OSA)、水溶性大豆多糖(WSSP))和明胶(GEL)的二元75/25共混膜中。基于GAR的体系表面粗糙度最小,因此薄膜透明度最高。基于WSSP的薄膜则呈现相反的结果。尽管存在相分离,CMC75/GEL25薄膜仍表现出优异的机械强度和刚度。CUR改善了薄膜的紫外/可见阻光特性,但对大多数其他物理化学性质没有影响。X射线衍射图显示,CUR促使GEL的三螺旋结构发生重排。作为高侵蚀性材料,CMC75/GEL25载体确保了CUR最快且最完全的释放。OSA75/GEL25体系表现出相反的行为。薄膜的抗自由基活性动力学曲线并未反映出CUR的释放情况。在平台期对2,2-二苯基-1-苦基肼(DPPH*)清除率的比较表明,添加CUR的薄膜具有相当可比的抗自由基潜力。CMC75/GEL25体系表现出最高的比色稳定性,这可能是由于CUR在富含GEL的微球中被完全包封的结果。在薄膜中发现了轻微的物理老化症状(焓松弛)。