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Molecular Structure, Physicochemical Characterization, and in Vitro Degradation of Barley Protein Films

机译:大麦蛋白膜的分子结构,理化特性和体外降解

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Barley protein films were prepared by thermopressing using glycerol as a plasticizer. The combined effects of heating temperature and amount of plasticizer interacted to determine protein conformation and, subsequently, the properties of the film matrix. The film barrier and mechanical properties were systematically investigated using Fourier transform infrared spectroscopy (FTIR), differential scanning calorimetry (DSC), SDS-PAGE, and protein solubility tests. These experiments demonstrated that heat treatment induced barley protein unfolding and then protein aggregation and the formation of covalent disulfide bonds to enhance film strength. Increasing the amount of plasticizer reduced protein denaturation and limited protein interactions, resulting in significantly improved film flexibility at the cost of reduced film moisture barrier property and tensile strength. In vitro degradation experiments demonstrated that barley films were resistant in gastric conditions, yet can still be completely degraded by intestinal enzymes, and they possess low cytotoxicity to Caco-2 cells. The prepared barley films have potential for development as delivery systems for gastric-sensitive bioactive compounds to the intestine for release.
机译:通过使用甘油作为增塑剂进行热压来制备大麦蛋白膜。加热温度和增塑剂的数量共同作用决定了蛋白质的构象,进而决定了薄膜基质的性能。使用傅里叶变换红外光谱(FTIR),差示扫描量热法(DSC),SDS-PAGE和蛋白质溶解度测试系统地研究了薄膜的阻隔性和机械性能。这些实验表明,热处理诱导大麦蛋白解折叠,然后蛋白聚集并形成共价二硫键以增强膜强度。增塑剂含量的增加会降低蛋白质变性和有限的蛋白质相互作用,从而以降低的薄膜防潮性能和拉伸强度为代价,大大提高薄膜的柔韧性。体外降解实验表明,大麦薄膜在胃部条件下具有抗性,但仍可以被肠内酶完全降解,并且对Caco-2细胞具有较低的细胞毒性。制备的大麦薄膜具有开发潜力,可作为胃敏感生物活性化合物向肠道释放的传递系统。

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