Effects of microgels fabricated by microfluidic on the stability, antioxidant, and immunoenhancing activities of aquatic protein

IF 5.2 Q1 FOOD SCIENCE & TECHNOLOGY Journal of Future Foods Pub Date : 2024-02-27 DOI:10.1016/j.jfutfo.2024.01.005
Mengjun Wang, Yaolan Cheng, Xue Li, Linyu Nian, Biao Yuan, Shujie Cheng, Suilou Wang, Chongjiang Cao
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Abstract

Aquatic products are considered a potential source of novel bioactive proteins, which are used as therapeutic drugs for the treatment of different diseases (such as oxidative stress, immunocompromised, and inflammation), as well as nutraceuticals and cosmetics. However, the physical and chemical properties of proteins are unstable, and they are easily denatured by the influence of external high temperature and polar pH during processing, resulting in the loss of their functional activity. Herein, Fenneropenaeus chinensis water-soluble protein (FCWP) and Lateolabrax japonicus water-soluble protein (LJWP) were encapsulated within spherical biopolymer microgels composed of pectin and chitosan produced by the microfluidic device. The encapsulated samples remained inside the microgels when they were exposed to upper gastrointestinal but were released when they were exposed to simulated colonic fluid due to the hydrolysis effect by enzymes secreted by the colonic microflora. The results showed that microgels improve the thermal stability of FCWP and LJWP due to the interaction between polysaccharides and proteins in the microgels. In addition, microgels encapsulation did not affect the antioxidant and immunoenhancing activities of FCWP and LJWP. In summary, these microgels are suitable for oral colon-specific delivery in functional foods and supplements.

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微流控制造的微凝胶对水产蛋白稳定性、抗氧化性和免疫增强活性的影响
水产品被认为是新型生物活性蛋白质的潜在来源,可用作治疗不同疾病(如氧化应激、免疫力低下和炎症)的药物以及营养保健品和化妆品。然而,蛋白质的物理和化学性质不稳定,在加工过程中容易受到外界高温和极性 pH 的影响而变性,导致其功能活性丧失。在此,利用微流体装置将金针虫水溶性蛋白(Fenneropenaeus chinensis water-soluble protein,FCWP)和日本晚粳稻水溶性蛋白(Lateolabrax japonicus water-soluble protein,LJWP)封装在由果胶和壳聚糖组成的球形生物聚合物微凝胶中。当样品暴露于上消化道时,封装样品仍留在微凝胶中,但当样品暴露于模拟结肠液时,由于结肠微生物菌群分泌的酶的水解作用,封装样品被释放出来。结果表明,由于微凝胶中的多糖和蛋白质之间的相互作用,微凝胶提高了 FCWP 和 LJWP 的热稳定性。此外,微凝胶封装不会影响 FCWP 和 LJWP 的抗氧化和免疫增强活性。总之,这些微凝胶适合在功能食品和补充剂中用于口服结肠特异性给药。
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公司名称
产品信息
阿拉丁
Zinc acetate
¥19.00~¥12209.14
上海源叶
上海源叶
Deacetylated chitosan
¥800.00~¥824.00
上海源叶
Rhodamine B (RhB)
上海源叶
Fluorescein isothiocyanate (FITC)
阿拉丁
2,2a?2-Azinobis-(3-ethylbenzthiazoline-6-sulphonate) (ABTS)
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