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一步法组装玉米醇溶蛋白/酪蛋白酸钠/海藻酸钠纳米粒用于包封和提高蜂胶的生物利用度。

One-step assembly of zein/caseinate/alginate nanoparticles for encapsulation and improved bioaccessibility of propolis.

机构信息

School of Food Science and Biotechnology, Zhejiang Gongshang University, Hangzhou, 310018, China.

出版信息

Food Funct. 2019 Feb 20;10(2):635-645. doi: 10.1039/c8fo01614c.

Abstract

The design of zein-based nanoparticles to encapsulate bioactive molecules has gained great attention in recent years. However, the use of ethanol to dissolve zein presents flammability concerns and the scale-up production of zein-based nanoparticles is also a concern. In our study, propolis loaded zein/caseinate/alginate nanoparticles were fabricated using a facile one-step procedure: a well-blended solution was prepared containing deprotonated propolis, soluble zein, dissociated sodium caseinate micelles (NaCas) and alginate at alkaline pH, and then this alkaline solution was added to 0.1 M citrate buffer (pH 3.8) to fabricate composite nanoparticles without using organic solvents and sophisticated equipment. During acidification, the alginate molecules adsorbed on the zein/NaCas surfaces by electrostatic complexation, which improved the stability towards aggregation of zein/NaCas nanoparticles under gastrointestinal (GI) or acidic pH. The nanoparticles prepared under the optimized method (method 3 sample) were of spherical morphology with a particle size around 208 nm and a negative zeta potential around -27 mV. The encapsulation efficiency (EE) and loading capacity (LC) of propolis reached 86.5% and 59.6 μg mg-1 by zein/NaCas/alginate nanoparticles, respectively. These nanoparticles were shown to be stable towards aggregation over a wide range of pH values (2-8) and salt concentrations (0-300 mM NaCl). Compared to free propolis, the bioaccessibility of propolis encapsulated with nanoparticles was increased to 80%. Our results showed a promising clean and scalability strategy to encapsulate hydrophobic nutraceuticals for applications in foods, supplements, and pharmaceuticals.

摘要

近年来,基于玉米醇溶蛋白的纳米粒子设计用于包封生物活性分子引起了极大的关注。然而,使用乙醇溶解玉米醇溶蛋白存在易燃性问题,并且玉米醇溶蛋白纳米粒子的规模化生产也是一个问题。在我们的研究中,采用简便的一步法制备了负载蜂胶的玉米醇溶蛋白/酪蛋白酸钠/海藻酸钠纳米粒子:在碱性 pH 下制备包含去质子化蜂胶、可溶性玉米醇溶蛋白、解离的酪蛋白酸钠胶束(NaCas)和海藻酸钠的充分混合溶液,然后将该碱性溶液添加到 0.1 M 柠檬酸盐缓冲液(pH 3.8)中,无需使用有机溶剂和复杂设备即可制备复合纳米粒子。在酸化过程中,海藻酸钠分子通过静电络合吸附在玉米醇溶蛋白/NaCas 表面上,这提高了玉米醇溶蛋白/NaCas 纳米粒子在胃肠道(GI)或酸性 pH 下聚集的稳定性。在优化方法(方法 3 样品)下制备的纳米粒子呈球形,粒径约为 208nm,zeta 电位约为-27mV。通过玉米醇溶蛋白/NaCas/海藻酸钠纳米粒子,蜂胶的包封效率(EE)和载药量(LC)分别达到 86.5%和 59.6μg mg-1。这些纳米粒子在广泛的 pH 值(2-8)和盐浓度(0-300mM NaCl)范围内表现出对聚集的稳定性。与游离蜂胶相比,纳米粒子包封的蜂胶的生物可利用性提高到 80%。我们的结果表明,这是一种有前途的清洁和可扩展策略,用于包封疏水性营养保健品,可应用于食品、保健品和制药领域。

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