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通过高压均质法在食品分散模型系统中对天然染料进行脂质体包封的研究。

Study of Natural Dyes' Liposomal Encapsulation in Food Dispersion Model Systems via High-Pressure Homogenization.

作者信息

Lapčík Lubomír, Lapčíková Barbora, Valenta Tomáš, Vašina Martin, Dudová Pavlína, Fišera Miroslav

机构信息

Department of Food Technology, Faculty of Technology, Tomas Bata University in Zlin, nam. T. G. Masaryka 5555, 760 01 Zlin, Czech Republic.

出版信息

Molecules. 2025 Apr 20;30(8):1845. doi: 10.3390/molecules30081845.

Abstract

The aim of this study was to investigate the encapsulation of natural food dyes incorporated into liposomes in terms of particle size, rheological and colour properties, zeta potential, and encapsulation efficiency. The liposomes contained dye substances of anthocyanins from freeze-dried raspberry powder (R), copper complexes of chlorophyllins (C), or commercial-grade β-carotene (B). The phospholipid envelope was composed of sunflower lecithin and carboxymethylcellulose sodium salt as a surface stabilizer treated by high-pressure homogenization. The median particle diameter of R and C systems fluctuated around 200 nm, while B systems showed a broader range of 165-405 nm. The rheological results demonstrated a specific flow behaviour pattern dependent on the rotational shear applied, indicating a flow-induced structural change in the dispersions. Samples were characterized by a translucent profile with relatively high lightness, accompanied by a hue angle () typical of the dye encapsulated. The zeta potential was approx. -30 mV, showing electrokinetically stabilized dispersions. The encapsulation efficiency () varied significantly, with the highest observed for anthocyanins, ranging from 36.17 to 84.61%. The chlorophyll encapsulation was the least effective, determined in the range between 1.82 and 16.03%. Based on the suitability index, optimal liposomal formulations were evaluated by means of the Central Composite Design (CCD).

摘要

本研究的目的是从粒径、流变学和颜色特性、zeta电位以及包封效率等方面研究纳入脂质体的天然食用色素的包封情况。脂质体含有来自冻干树莓粉(R)的花青素染料物质、叶绿酸铜配合物(C)或商业级β-胡萝卜素(B)。磷脂包膜由向日葵卵磷脂和羧甲基纤维素钠盐作为表面稳定剂组成,通过高压均质处理。R和C体系的中位粒径在200nm左右波动,而B体系的粒径范围较宽,为165 - 405nm。流变学结果表明,存在一种特定的流动行为模式,该模式取决于所施加的旋转剪切力,表明分散体中存在流动诱导的结构变化。样品的特征是具有相对较高亮度的半透明轮廓,同时伴有所包封染料特有的色相角()。zeta电位约为 - 30mV,表明分散体具有电动稳定作用。包封效率()差异显著,花青素的包封效率最高,范围为36.17%至84.61%。叶绿素的包封效果最差,测定范围在1.82%至16.03%之间。基于适用性指数,通过中心复合设计(CCD)评估了最佳脂质体制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/426c/12029904/f6c3c8e632fd/molecules-30-01845-g001.jpg

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