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壳聚糖生物聚合物对纳米脂质体中花青素化合物稳定性和表面特性的修饰作用

Modifying the Stability and Surface Characteristic of Anthocyanin Compounds Incorporated in the Nanoliposome by Chitosan Biopolymer.

作者信息

Homayoonfal Mina, Mousavi Mohammad, Kiani Hossein, Askari Gholamreza, Desobry Stephane, Arab-Tehrany Elmira

机构信息

Bioprocessing and Biodetection Lab (BBL), Department of Food Science and Technology, University of Tehran, Karaj 999067, Iran.

Laboratoire d'Ingénierie des Biomolécules (LIBio), Université de Lorraine, 2 Avenue de la Forêt de Haye, TSA 40602, CEDEX, 54518 Vandoeuvre-lès-Nancy, France.

出版信息

Pharmaceutics. 2022 Aug 3;14(8):1622. doi: 10.3390/pharmaceutics14081622.

Abstract

In this study, a novel approach was investigated to improve the stability of anthocyanin compounds (AC) by encapsulating them in nanoliposomes resulting from rapeseed lecithin alongside chitosan coating. The results indicate that the particle size, electrophoretic mobility, encapsulation efficiency, and membrane fluidity of nanoliposomes containing anthocyanin compounds were 132.41 nm, -3.26 µm·cm/V·S, 42.57%, and 3.41, respectively, which changed into 188.95 nm, +4.80 µm·cm/V·S, 61.15%, and 2.39 after coating with chitosan, respectively. The results also suggest improved physical and chemical stability of nanoliposomes after coating with chitosan. TEM images demonstrate the produced particles were spherical and had a nanoscale, where the existence of a chitosan layer around the nanoparticles was visible. Shear rheological tests illustrate that the flow behavior of nanoliposomes was altered from Newtonian to shear thinning following chitosan incorporation. Further, chitosan diminished the surface area of the hysteresis loop (thixotropic behavior). The oscillatory rheological tests also show the presence of chitosan led to the improved mechanical stability of nanoliposomes. The results of the present study demonstrate that chitosan coating remarkably improved encapsulation efficiency, as well as the physical and mechanical stability of nanoliposomes. Thus, coating AC-nanoliposomes with chitosan is a promising approach for effective loading of AC and enhancing their stability to apply in the pharmaceutic and food industries.

摘要

在本研究中,研究了一种新方法,即将花青素化合物(AC)包裹在由菜籽卵磷脂与壳聚糖涂层制成的纳米脂质体中,以提高其稳定性。结果表明,含有花青素化合物的纳米脂质体的粒径、电泳迁移率、包封率和膜流动性分别为132.41nm、-3.26μm·cm/V·S、42.57%和3.41,用壳聚糖包被后分别变为188.95nm、+4.80μm·cm/V·S、61.15%和2.39。结果还表明,用壳聚糖包被后纳米脂质体的物理和化学稳定性得到了改善。透射电子显微镜图像显示所产生的颗粒呈球形且具有纳米级尺寸,在纳米颗粒周围可见壳聚糖层的存在。剪切流变学测试表明,加入壳聚糖后纳米脂质体的流动行为从牛顿流体变为剪切变稀。此外,壳聚糖减小了滞后环的表面积(触变性)。振荡流变学测试还表明,壳聚糖的存在导致纳米脂质体的机械稳定性提高。本研究结果表明,壳聚糖包被显著提高了纳米脂质体的包封率以及物理和机械稳定性。因此,用壳聚糖包被AC-纳米脂质体是一种有前景的方法,可有效负载AC并提高其稳定性,以应用于制药和食品工业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3468/9414094/14fa4e99a929/pharmaceutics-14-01622-g001.jpg

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