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Impact of Cosmetic Lotions on Nanoparticle Penetration through ex vivo C57BL/6 Hairless Mouse and Human Skin: A Comparison Study

机译:化妆品乳液对离体C57BL / 6无毛小鼠和人皮肤的纳米颗粒渗透的影响:比较研究

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摘要

Understanding the interactions of nanoparticles (NPs) with skin is important from a consumer and occupational health and safety perspective, as well as for the design of effective NP-based transdermal therapeutics. Despite intense efforts to elucidate the conditions that permit NP penetration, there remains a lack of translatable results from animal models to human skin. The objectives of this study are to investigate the impact of common skin lotions on NP penetration and to quantify penetration differences of quantum dot (QD) NPs between freshly excised human and mouse skin. QDs were mixed in 7 different vehicles, including 5 commercial skin lotions. These were topically applied to skin using two exposure methods; a petri dish protocol and a Franz diffusion cell protocol. QD presence in the skin was quantified using Confocal Laser Scanning Microscopy. Results show that the commercial vehicles can significantly impact QD penetration in both mouse and human skin. Lotions that contain alpha hydroxyl acids (AHA) facilitated NP penetration. Lower QD signal was observed in skin studied using a Franz cell. Freshly excised human skin was also studied immediately after the sub-cutaneous fat removal process, then after 24 hours rest ex vivo. Resting human skin 24 hours prior to QD exposure significantly reduced epidermal presence. This study exemplifies how application vehicles, skin processing and the exposure protocol can affect QD penetration results and the conclusions that maybe drawn between skin models.
机译:从消费者和职业健康与安全的角度,以及对于设计基于NP的有效透皮治疗剂,了解纳米颗粒(NPs)与皮肤的相互作用非常重要。尽管为阐明允许NP渗透的条件付出了巨大的努力,但仍然缺乏从动物模型到人体皮肤的可翻译结果。这项研究的目的是调查常见的皮肤乳液对NP渗透的影响,并量化新鲜切除的人和小鼠皮肤之间量子点(QD)NP的渗透差异。 QD混合在7种不同的媒介物中,其中包括5种商业护肤液。使用两种暴露方法将它们局部施用于皮肤。培养皿协议和弗朗兹扩散池协议。使用共聚焦激光扫描显微镜对皮肤中QD的存在进行定量。结果表明,商用车可以显着影响QD在小鼠和人类皮肤中的渗透。含有α羟基酸(AHA)的乳液有助于NP渗透。在使用Franz细胞研究的皮肤中观察到较低的QD信号。在皮下脂肪去除过程之后,然后离体休息24小时后,还立即研究了新鲜切除的人皮肤。暴露于QD之前24小时休息的人类皮肤可显着减少表皮的存在。这项研究例证了应用工具,皮肤处理和暴露协议如何影响QD渗透结果以及可能在皮肤模型之间得出的结论。

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