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Skin Corrosion and Irritation Test of Nanoparticles Using Reconstructed Three-Dimensional Human Skin Model EpiDermTM

机译:使用重构的三维人体皮肤模型EpiDermTM对纳米颗粒进行皮肤腐蚀和刺激性测试

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摘要

Effects of nanoparticles (NPs) on skin corrosion and irritation using three-dimensional human skin models were investigated based on the test guidelines of Organization for Economic Co-operation and Development (OECD TG431 and TG439). EpiDermTM skin was incubated with NPs including those harboring iron (FeNPs), aluminum oxide (AlNPs), titanium oxide (TNPs), and silver (AgNPs) for a defined time according to the test guidelines. Cell viabilities of EpiDermTM skins were measured by the 3-(4, 5-dimethylthi-azol-2-yl)-2.5-diphenyltetrazolium bromide based method. FeNPs, AlNPs, TNPs, and AgNPs were non-corrosive because the viability was more than 50% after 3 min exposure and more than 15% after 60 min exposure, which are the non-corrosive criteria. All NPs were also non-irritants, based on viability exceeding 50% after 60 min exposure and 42 hr post-incubation. Release of interleukin 1-alpha and histopathological analysis supported the cell viability results. These findings suggest that FeNPs, AlNPs, TNPs, and AgNPs are ‘non-corrosive’ and ‘non-irritant’ to human skin by a globally harmonized classification system.
机译:根据经济合作与发展组织(OECD TG431和TG439)的测试指南,使用三维人体皮肤模型研究了纳米颗粒(NPs)对皮肤腐蚀和刺激的影响。根据测试指南,将EpiDerm TM 皮肤与包含铁(FeNPs),氧化铝(AlNPs),氧化钛(TNPs)和银(AgNPs)的NP一起孵育一段确定的时间。通过基于3-(4,5-二甲基噻唑-2-基)-2.5-二苯基四唑鎓溴化物的方法测量EpiDerm TM 皮肤的细胞活力。 FeNPs,AlNPs,TNPs和AgNPs是非腐蚀性的,因为暴露后3分钟的生存力超过50%,暴露60分钟后的生存力超过15%,这是非腐蚀性标准。基于暴露后60分钟和孵育后42小时的生存力超过50%,所有NP也是无刺激性的。白细胞介素1-α的释放和组织病理学分析支持了细胞活力的结果。这些发现表明,通过全球统一的分类系统,FeNPs,AlNPs,TNPs和AgNPs对人体皮肤具有“非腐蚀性”和“非刺激性”。

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