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从淡水贻贝(Muller)汤中分离和表征具有生物活性的蛋白聚糖-脂质纳米粒子。

Isolation and Characterization of Bioactive Proteoglycan-Lipid Nanoparticles from Freshwater Clam ( Muller) Soup.

机构信息

Food Nutrition Sciences Centre, School of Food Science and Biotechnology, Zhejiang Gongshang University, Hangzhou 310012, China.

Department of Food Science, National Taiwan Ocean University, Keelung City 202, Taiwan.

出版信息

J Agric Food Chem. 2021 Feb 10;69(5):1610-1618. doi: 10.1021/acs.jafc.0c02402. Epub 2021 Jan 27.

Abstract

Nanoparticles can be prepared by several sophisticated processes but until now, it cannot be prepared by simple home cooking. Here, we report that two incidental food nanoparticles (iFNPs) consisting of proteoglycans and phytosterols were isolated from soup made from freshwater clam ( Muller), a renowned folk remedy for liver problems in China and other parts of East Asia. These two bioactive iFNPs were obtained and characterized by anionic exchange chromatography coupled with multi-angle laser light scattering measurement. Their hydrodynamic diameters and ζ-potentials were 50 ± 0.2 nm and -28.0 mV and 67 ± 0.4 nm and -9.96 mV, respectively. FT-IR revealed that the proteoglycans in the particles contained α-type heteropolysaccharides. Both iFNPs were resistant to pH changes and separation by mechanical force but responsive to temperature changes. They effectively inhibited cholesterol uptake , which resonates with the traditional belief that freshwater clam soup provides hepatoprotective benefits. This study suggests that these two proteoglycan-lipid iFNPs are the active moieties and offers a supramolecular structure-based approach to study the function of such complex matrices derived from food.

摘要

纳米颗粒可以通过几种复杂的工艺制备,但到目前为止,还不能通过简单的家庭烹饪来制备。在这里,我们报告了两种偶然的食物纳米颗粒(iFNPs),它们由糖胺聚糖和植物固醇组成,从中国和东亚其他地区著名的治疗肝脏问题的淡水贻贝(Muller)汤中分离出来。这两种生物活性 iFNPs 通过阴离子交换色谱与多角度激光光散射测量相结合获得并进行了表征。它们的流体力学直径和 ζ 电位分别为 50 ± 0.2nm 和 -28.0mV 和 67 ± 0.4nm 和 -9.96mV。FT-IR 表明,颗粒中的糖胺聚糖含有 α 型杂多糖。这两种 iFNPs 都能抵抗 pH 值变化和机械力分离,但能响应温度变化。它们能有效抑制胆固醇摄取,这与淡水贻贝汤具有保肝作用的传统观念相吻合。本研究表明,这两种糖胺聚糖 - 脂质 iFNPs 是活性成分,为研究源自食物的此类复杂基质的功能提供了一种基于超分子结构的方法。

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