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首页> 外文期刊>Food Hydrocolloids >Two novel calcium delivery systems fabricated by casein phosphopeptides and chitosan oligosaccharides: Preparation, characterization, and bioactive studies
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Two novel calcium delivery systems fabricated by casein phosphopeptides and chitosan oligosaccharides: Preparation, characterization, and bioactive studies

机译:由酪蛋白磷酸肽和壳聚糖寡糖制造的两种新型钙传递系统:制备,表征和生物活性研究

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摘要

Calcium delivery systems based on natural products such as proteins and polysaccharides, for improving calcium bioavailability, were of particular interest for food applications. Here, two novel delivery vehicles based on casein phosphopeptides (CPP) and chitosan oligosaccharides (COS) were prepared, characterized, and evaluated. These delivery vehicles were prepared via Amadori-type reactions and TGase-catalyzed reactions. Particle size and zeta potential determinations results showed that the particle size of two delivery vehicles significantly increased and the solution stability not decreased. Besides, the calcium release time of two nano-carriers significantly increased. Fourier transform infrared spectroscopy (FTIR) indicated that the chemical grafting of Amadori-type copolymer generated in -NH2 of CPP and C=O of COS, while TGase-type copolymer in -NH2 of CPP and -NH2 of COS. Structural characterizations revealed COS exerted a screening effect to protect CPP from the aqueous phase. Additionally, Caco-2 cells model demonstrated that two delivery vehicles could enhance intestinal calcium absorption. Serum and bone parameters exhibited that two delivery vehicles could enhance the calcium retention and bone synthesis. Gut microbiota environment was regulated in a prebiotic-like manner, and some microbial metabolite like butyric acid increased. Therefore, two calcium delivery systems could not only function as novel calcium supplements, but also protect gut health.
机译:基于天然产物例如蛋白质和多糖的钙递送系统,用于改善钙的生物利用度,在食品应用中特别受关注。在此,制备,表征和评估了两种基于酪蛋白磷酸肽(CPP)和壳聚糖寡糖(COS)的新型递送载体。这些递送载体是通过Amadori型反应和TGase催化的反应制备的。粒度和ζ电位测定结果表明,两种递送载体的粒度显着增加,溶液稳定性未降低。此外,两种纳米载体的钙释放时间显着增加。傅里叶变换红外光谱(FTIR)表明,在CPP的-NH2和COS的C = O中生成的Amadori型共聚物的化学接枝,而在CPP的-NH2和COS的-NH2中的TGase型共聚物的化学接枝。发挥屏蔽作用以保护CPP免受水相影响。此外,Caco-2细胞模型表明两种运载工具可以增强肠道钙的吸收。血清和骨骼参数显示出两种递送载体可以增强钙保留和骨骼合成。肠道菌群环境以类似益生元的方式调节,并且某些微生物代谢产物如丁酸增加。因此,两种钙传递系统不仅可以充当新型钙补充剂,还可以保护肠道健康。

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