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开发和表征用于纳米材料安全性评估的 96 孔暴露系统。

Development and Characterization of a 96-Well Exposure System for Safety Assessment of Nanomaterials.

机构信息

Bioprocessing & Bioanalytics, Fraunhofer Institute for Biomedical Engineering IBMT, Joseph-von-Fraunhofer-Weg 1, 66280, Sulzbach, Germany.

VITROCELL Systems GmbH, Fabrik Sonntag 3, 79183, Waldkirch, Germany.

出版信息

Small. 2023 Jun;19(23):e2207207. doi: 10.1002/smll.202207207. Epub 2023 Mar 15.

Abstract

In this study, a 96-well exposure system for safety assessment of nanomaterials is developed and characterized using an air-liquid interface lung epithelial model. This system is designed for sequential nebulization. Distribution studies verify the reproducible distribution over all 96 wells, with lower insert-to-insert variability compared to non-sequential application. With a first set of chemicals (TritonX), drugs (Bortezomib), and nanomaterials (silver nanoparticles and (non-)fluorescent crystalline nanocellulose), sequential exposure studies are performed with human lung epithelial cells followed by quantification of the deposited mass and of cell viability. The developed exposure system offers for the first time the possibility of exposing an air-liquid interface model in a 96-well format, resulting in high-throughput rates, combined with the feature for sequential dosing. This exposure system allows the possibility of creating dose-response curves resulting in the generation of more reliable cell-based assay data for many types of applications, such as safety analysis. In addition to chemicals and drugs, nanomaterials with spherical shapes, but also morphologically more complex nanostructures can be exposed sequentially with high efficiency. This allows new perspectives on in vivo-like and animal-free approaches for chemical and pharmaceutical safety assessment, in line with the 3R principle of replacing and reducing animal experiments.

摘要

本研究开发并表征了一种用于纳米材料安全性评估的 96 孔暴露系统,该系统采用气液界面肺上皮模型。该系统设计用于顺序雾化。分布研究验证了所有 96 个孔均可重复分布,与非顺序应用相比,插入物之间的变异性更低。使用第一组化学品(TritonX)、药物(硼替佐米)和纳米材料(银纳米颗粒和(非)荧光结晶纳米纤维素),对人肺上皮细胞进行顺序暴露研究,然后定量沉积质量和细胞活力。开发的暴露系统首次提供了以 96 孔格式暴露气液界面模型的可能性,从而实现了高通量,同时具有顺序给药的特点。该暴露系统可用于创建剂量反应曲线,从而为许多类型的应用(如安全性分析)生成更可靠的基于细胞的测定数据。除了化学品和药物外,还可以高效地顺序暴露具有球形形状的纳米材料,以及形态更复杂的纳米结构。这为基于 3R 原则(替代和减少动物实验)的类似体内和无动物的化学和药物安全性评估方法提供了新的视角。

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