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在级联生物隔室中模拟纳米材料转化以提高体外给药方案的生理相关性:可选还是必需?

Simulating Nanomaterial Transformation in Cascaded Biological Compartments to Enhance the Physiological Relevance of In Vitro Dosing Regimes: Optional or Required?

机构信息

In vitro Toxicology Group, Institute of Life Science, Swansea University Medical School, Swansea University, Singleton Park, Swansea, Wales, SA2 8PP, UK.

IUF-Leibniz Research Institute for Environmental Medicine, Auf'm Hennekamp 50, Düsseldorf, 40225, Germany.

出版信息

Small. 2021 Apr;17(15):e2004630. doi: 10.1002/smll.202004630. Epub 2021 Jan 21.

Abstract

Would an engineered nanomaterial (ENM) still have the same identity once it reaches a secondary target tissue after a journey through several physiological compartments? Probably not. Does it matter? ENM pre-treatments may enhance the physiological relevance of in vitro testing via controlled transformation of the ENM identity. The implications of material transformation upon reactivity, cytotoxicity, inflammatory, and genotoxic potential of Ag and SiO ENM on advanced gastro-intestinal tract cell cultures and 3D liver spheroids are demonstrated. Pre-treatments are recommended for certain ENM only.

摘要

当一种工程纳米材料(ENM)在经过几个生理隔室的旅程后到达次要靶组织时,它还会具有相同的身份吗?可能不会。这有关系吗?ENM 预处理可以通过控制 ENM 身份的转化来增强体外测试的生理相关性。展示了 Ag 和 SiO ENM 的材料转化对先进的胃肠道细胞培养物和 3D 肝球体的反应性、细胞毒性、炎症和遗传毒性潜力的影响。仅推荐对某些 ENM 进行预处理。

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