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比较体外和体内经人鼻腔上皮细胞转运纳米银颗粒和离子。

Comparing ex vivo and in vitro translocation of silver nanoparticles and ions through human nasal epithelium.

机构信息

Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, USA.

Division of Head and Neck Surgery, Rhinology - Sinus and Skull Base Surgery Program, Department of Surgery, University of Utah School of Medicine, USA.

出版信息

Biomaterials. 2018 Jul;171:97-106. doi: 10.1016/j.biomaterials.2018.04.013. Epub 2018 Apr 14.

Abstract

Silver nanomaterials are widely used in clinically approved devices, consumer goods, and over-the-counter nutraceutical products. Despite the increase in silver nanomaterial research, few investigations have specifically distinguished the biological effects resulting from silver nanoparticles (AgNPs) versus silver ions released from AgNPs. This is in part, due to the complex analytical methods required to characterize silver ion release from AgNPs in biological media. This study sought to analyze silver ion release from AgNPs in biological media, compare silver transport from soluble AgNO and AgNPs through ex vivo full thickness sinus human tissue explants and human nasal epithelium and determine fractional AgNP internalization by human nasal epithelial cells. Rapid silver ion release is observed from AgNPs in human nasal epithelial cell medium over 3 h (9.6% of total silver mass). Significantly lower translocation of AgNPs is observed through human nasal epithelial cell monolayers and ex vivo human sinus tissue explants compared to silver ion (AgNO). AgNP internalization is directly observed in AgNP-exposed human nasal epithelial cell monolayers by live cell scanning transmission electron microscopy (STEM), providing one potential mechanism for AgNP transcytosis. However, in vitro AgNP dissolution experiments suggest that silver in human nasal epithelium is primarily silver ion. Ionic AgNO produces significantly higher silver translocation, supporting previous results claiming silver ion as primarily responsible for biological effects of AgNPs.

摘要

纳米银材料被广泛应用于临床认可的器械、消费品和非处方营养保健品中。尽管对纳米银材料的研究在增加,但很少有研究能明确区分纳米银颗粒(AgNPs)与 AgNPs 释放的银离子所产生的生物学效应。这在一定程度上是由于需要复杂的分析方法来描述生物介质中 AgNPs 释放的银离子。本研究旨在分析生物介质中 AgNPs 的银离子释放情况,比较可溶性 AgNO 和 AgNPs 中银的转运情况,通过离体全厚度鼻窦人组织外植体和人鼻上皮,并确定人鼻上皮细胞对 AgNP 的内吞分数。在人鼻上皮细胞培养基中,AgNPs 在 3 小时内迅速释放出大量的银离子(占总银量的 9.6%)。与银离子(AgNO)相比,AgNPs 通过人鼻上皮细胞单层和离体人鼻窦组织外植体的转运明显较少。通过活细胞扫描透射电子显微镜(STEM)直接观察到暴露于 AgNP 的人鼻上皮细胞单层中的 AgNP 内吞作用,这为 AgNP 的转胞作用提供了一种潜在的机制。然而,体外 AgNP 溶解实验表明,人鼻上皮中的银主要是银离子。AgNO 产生了更高的银转运,支持了之前的研究结果,即银离子是 AgNPs 生物学效应的主要原因。

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