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设计并制造果胶包覆的纳米脂质体递药系统用于生物活性多酚:根皮苷。

Design and fabrication of pectin-coated nanoliposomal delivery systems for a bioactive polyphenolic: Phloridzin.

机构信息

Department of Food Science, Technology and Engineering, University of Tehran, P. O. Box 4111, 31587-11167 Karaj, Iran.

Department of Food Science, Technology and Engineering, University of Tehran, P. O. Box 4111, 31587-11167 Karaj, Iran.

出版信息

Int J Biol Macromol. 2018 Jun;112:626-637. doi: 10.1016/j.ijbiomac.2018.01.108. Epub 2018 Jan 31.

Abstract

Nanostructured colloidal delivery systems comprising of pectin-coated nanoliposomes (pectonanoliposomes) were developed as carriers for a bioactive polyphenolic compound (phloridzin). Phloridzin-loaded nanoliposomes were fabricated using a heating-stirring-sonication method, and coated with low methoxyl pectin using an electrostatic deposition approach. Dynamic light scattering, micro-electrophoresis, atomic force microscopy, and UV-Visible spectroscopy were used to investigate the impact of system composition on the size, charge, morphology and stability as well as immobilization, adsorption and encapsulation efficiencies of the pectonanoliposomes. Response surface methodology was used to optimize the composition of the pectonanoliposomes based on particle size and charge characteristics. Linear, quadratic and interaction effects of 1,2-dioleoyl-3-trimethyl ammonium propane/lecithin, phloridzin/lecithin and pectin/liposome ratios significantly influenced the mean hydrodynamic diameter and/or surface charge of pectonanoliposomes. Second-order polynomial regression models were generated for intensity-weighted particle size and zeta potential of the designed carriers. Topographic and phase contrast images showed that pectonanoliposomes exhibited a range of different morphologies. Coating the nanoliposomes with pectin improved their immobilization and encapsulation efficiencies as well as physical storage stability. Cationic pectonanoliposomes were superior to plain systems regarding long-term stability. Our results suggest that pectonanoliposomes may be suitable delivery systems for polyphenolic nutraceuticals, such as phloridizin, in functional food and pharmaceutical applications.

摘要

采用加热搅拌-超声法制备了负载有生物活性多酚化合物(根皮苷)的纳米脂质体,并采用静电沉积法用低甲氧基果胶对其进行了包覆,得到了包含果胶包覆的纳米脂质体(pectonanoliposomes)的纳米胶体递送系统。采用动态光散射、微电泳、原子力显微镜和紫外可见光谱研究了系统组成对脂质体粒径、电荷、形态和稳定性以及 pectonanoliposomes 的固定化、吸附和包封效率的影响。响应面法基于粒径和电荷特性对 pectonanoliposomes 的组成进行了优化。1,2-二油酰基-3-三甲铵丙烷/卵磷脂、根皮苷/卵磷脂和果胶/脂质体比例的线性、二次和交互效应对 pectonanoliposomes 的平均水动力直径和/或表面电荷有显著影响。为设计载体的强度加权粒径和zeta 电位生成了二阶多项式回归模型。形貌和相衬图像表明,pectonanoliposomes 表现出一系列不同的形态。用果胶包覆纳米脂质体提高了其固定化和包封效率以及物理储存稳定性。阳离子 pectonanoliposomes 在长期稳定性方面优于普通系统。研究结果表明,pectonanoliposomes 可能是根皮苷等多酚类功能性食品和药物应用中的营养保健品的合适递送系统。

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