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Enhanced Dark-Field Hyperspectral Imaging and Spectral Angle Mapping for Nanomaterial Detection in Consumer Care Products and in Skin Following Dermal Exposure

机译:增强的暗场高光谱成像和光谱角映射,用于消费者护理产品中的纳米材料检测和皮肤曝光后皮肤

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摘要

Consumer personal care products, and cosmetics containing nanomaterials (NM), are increasingly available in the Canadian market. Current Canadian regulations do not require product labeling for ingredients that are present in the nanoscale. As a result, unless voluntarily disclosed, it is unclear which products contain NM. The enhanced dark-field hyperspectral imaging (EDF-HSI) coupled with spectral angle mapping (SAM) is a recent technique that has shown much promise for detection of NM in complex matrices. In the present study, EDF-HSI was used to screen cosmetic inventories for the presence of nano silver (nAg), nano gold (nAu), and nano titanium dioxide (nTiO(2)). In addition, we also assessed the potential of EDF-HSI as a tool to detect NM in skin layers following application of NM products in vitro on commercially available artificial skin constructs (ASCs) and in vivo on albino hairless SKH-1 mouse skin. Spectroscopic analysis positively detected nAu (4/9 products) and nTiO(2) (7/13 products), but no nAg (0/6 products) in a subset of the cosmetics. The exposure of ASCs for 24 h in a Franz diffusion cell system to a diluted cosmetic containing nTiO(2) revealed penetrance of nTiO(2) through the epidermal layers and was detectable in the receptor fluid. Moreover, both single and multiple applications of nTiO(2) containing cosmetics on the dorsal surface of SKH-1 mice resulted in detectable levels of trace nTiO(2) in the layers of the skin indicating that penetrance of NM was occurring after each application of the product. The current study demonstrates the sensitivity of EDF-HSI with SAM mapping for qualitative detection of NM present in cosmetic products per se and very low levels in complex biological matrices on which these products are applied.
机译:消费者个人护理产品和含有纳米材料(NM)的化妆品,在加拿大市场越来越多地提供。目前的加拿大法规不需要产品标记纳米级中存在的成分。结果,除非自愿公开,否则目前尚不清楚哪种产品含有NM。增强的暗场高光谱成像(EDF-HSI)与光谱角映射(SAM)耦合,是最近的技术,其在复杂矩阵中检测NM的许多承诺。在本研究中,EDF-HSI用于筛选用于存在纳米银(NAG),纳米金(NAU)和纳米二氧化钛(NTIO(2))的存在的化妆品库存。此外,我们还评估了EDF-HSI作为检测皮肤层中NM的工具的潜力,这些工具在在体外应用NM产品在市售的人工皮肤构建体(ASCS)和体内albino无毛SKH-1小鼠皮肤上。光谱分析持续检测到NAU(4/9产品)和NTIO(2)(7/13产品),但在化妆品的子集中没有NAG(0/6产品)。在Franz扩散电池系统中暴露24小时的24小时至含有NtiO(2)的稀释的化妆品,揭示了通过表皮层的NtiO(2)的渗透,并在受体流体中检测。此外,在SKH-1小鼠的背面上含有化妆品的单一和多种施用含有化妆品,导致皮肤层中的痕量NtiO(2)的可检测水平,表明每次应用后都发生了NM的渗透产品。目前的研究表明,EDF-HSI与SAM映射的敏感性,用于施加这些产品的复杂生物学基质中的化妆品产品中NM的定性检测NM的定性检测。

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