首页> 美国卫生研究院文献>Toxicological Sciences >Quantitative Determination of Skin Penetration of PEG-Coated CdSe Quantum Dots in Dermabraded but not Intact SKH-1 Hairless Mouse Skin
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Quantitative Determination of Skin Penetration of PEG-Coated CdSe Quantum Dots in Dermabraded but not Intact SKH-1 Hairless Mouse Skin

机译:定量测定PEG包覆的CdSe量子点在皮肤磨蚀但未完整的SKH-1无毛小鼠皮肤中的皮肤渗透率的定量测定

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摘要

Many cosmetics, sunscreens, and other consumer products are reported to contain nanoscale materials. The possible transdermal absorption of nanoscale materials and the long-term consequences of the absorption have not been determined. We used polyethylene glycol coated cadmium selenide (CdSe) core quantum dots (QD; 37 nm diameter) to evaluate the penetration of nanoscale material into intact, tape stripped, acetone treated, or dermabraded mouse skin. QD were suspended in an oil-in-water emulsion (approximately 9μM) and the emulsion was applied at 2 mg/cm2 to mouse dorsal skin pretreated as follows: intact; tape stripped to remove the stratum corneum; acetone pretreated; dermabraded to remove stratum corneum and epidermis. QD penetration into the skin was monitored in sentinel organs (liver and regional draining lymph nodes) using inductively coupled plasma mass spectrometry analysis of cadmium (from the CdSe QD). No consistent cadmium elevation was detected in the sentinel organs of mice with intact, acetone pretreated, or tape-stripped skin at 24- and 48-h post-QD application; however, in dermabraded mice, cadmium elevations were detected in the lymph nodes and liver. QD accumulation (as cadmium) in the liver was approximately 2.0% of the applied dose. The passing of QD through the dermabraded skin was confirmed using confocal fluorescence microscopy. These results suggest that transdermal absorption of nanoscale materials depends on skin barrier quality, and that the lack of an epidermis provided access to QD penetration. Future dermal risk assessments of nanoscale materials should consider key barrier aspects of skin and its overall physiologic integrity.
机译:据报道,许多化妆品,防晒霜和其他消费品都包含纳米级材料。尚未确定纳米级材料可能的经皮吸收和吸收的长期后果。我们使用了聚乙二醇包覆的硒化镉(CdSe)核心量子点(QD;直径为37 nm)来评估纳米级材料在完整,带状剥离,丙酮处理或皮肤磨损的小鼠皮肤中的渗透性。将QD悬浮在水包油乳剂(约9μM)中,并将该乳剂以2 mg / cm 2 的方式施用于经过以下预处理的小鼠背部皮肤:剥离胶带以去除角质层;丙酮预处理;磨皮去除角质层和表皮。使用电感耦合等离子体质谱分析镉(来自CdSe QD),监测前哨器官(肝脏和区域引流性淋巴结)中QD渗透到皮肤中的情况。在QD施用后24小时和48小时,在完整,丙酮预处理或胶带剥开的皮肤的小鼠前哨器官中未检测到一致的镉升高;然而,在有皮肤病的小鼠中,在淋巴结和肝脏中检测到镉升高。肝脏中的QD积累(以镉计)约为所用剂量的2.0%。使用共聚焦荧光显微镜检查证实QD通过了皮肤磨皮的皮肤。这些结果表明,纳米材料的透皮吸收取决于皮肤屏障的质量,表皮的缺乏提供了QD渗透的途径。纳米材料的未来皮肤风险评估应考虑皮肤的关键屏障方面及其整体生理完整性。

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