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纳米 ZnO 与糖相互作用对生物响应的影响。

Effects of Interactions between ZnO Nanoparticles and Saccharides on Biological Responses.

机构信息

Major of Food Science & Technology, Department of Applied Food System, Seoul Women's University, Seoul 01797, Korea.

出版信息

Int J Mol Sci. 2018 Feb 6;19(2):486. doi: 10.3390/ijms19020486.

Abstract

Zinc oxide (ZnO) nanoparticles (NPs) are widely used as a Zn supplement, because Zn plays a role in many cellular and immune functions but public concern about their potentially undesirable effects on the human body is growing. When NPs are added in food matrices, interactions between NPs and food components occur, which can affect biological systems. In this study, interactions between ZnO NPs and saccharides were investigated by measuring changes in hydrodynamic radius, zeta potential and solubility and by quantifying amounts of adsorbed saccharides on NPs; acacia honey, sugar mixtures (containing equivalent amounts of fructose, glucose, sucrose and maltose) and monosaccharide solutions were used as model compounds. Biological responses of NPs dispersed in different saccharides were also evaluated in human intestinal cells and rats in terms of cytotoxicity, cellular uptake, intestinal transport and oral absorption. The results demonstrate that the hydrodynamic radii and zeta potentials of NPs were highly affected by saccharides. In addition, trace nutrients influenced NP/saccharide interactions and interactive effects between saccharides on the interactions were found. NPs in all saccharides increased inhibition of cell proliferation and enhanced cellular uptake. Oral absorption of NPs was highly enhanced by 5% glucose, which is in-line with intestinal transport result. These findings show that ZnO NPs interact with saccharides and these interactions affects biological responses.

摘要

氧化锌(ZnO)纳米粒子(NPs)被广泛用作 Zn 补充剂,因为 Zn 在许多细胞和免疫功能中发挥作用,但公众对其对人体潜在不良影响的担忧日益增加。当 NPs 添加到食物基质中时,NPs 与食物成分之间会发生相互作用,从而影响生物系统。在这项研究中,通过测量水动力半径、Zeta 电位和溶解度的变化以及定量 NPs 上吸附的糖量,研究了 ZnO NPs 与糖之间的相互作用;使用阿拉伯树胶蜂蜜、糖混合物(含有等量的果糖、葡萄糖、蔗糖和麦芽糖)和单糖溶液作为模型化合物。还从细胞毒性、细胞摄取、肠道转运和口服吸收方面评估了分散在不同糖中的 NPs 在人肠细胞和大鼠中的生物反应。结果表明,糖对 NPs 的水动力半径和 Zeta 电位有很大影响。此外,痕量营养素影响 NP/糖相互作用,并发现糖之间存在相互作用的影响。所有糖中的 NPs 均增加了对细胞增殖的抑制作用并增强了细胞摄取。5%葡萄糖高度促进了 NPs 的口服吸收,这与肠道转运结果一致。这些发现表明 ZnO NPs 与糖相互作用,这些相互作用会影响生物反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc0c/5855708/d765f6bca45d/ijms-19-00486-g001.jpg

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