Therapeutics Research Centre, The University of Queensland, Woolloongabba, Australia.
Eur J Pharm Biopharm. 2013 Jun;84(2):297-308. doi: 10.1016/j.ejpb.2013.01.020. Epub 2013 Feb 28.
The use of nanoparticulate zinc oxide (ZnO-NP) in sunscreens and other cosmetic products has raised public health concerns. The two key issues are the extent of exposure to ZnO-NP and the likely hazard after the application of ZnO-NP in sunscreen and cosmetic products to humans in vivo. Our aims were to assess exposure by the extent of ZnO-NP penetration into the viable epidermis and hazard by changes in the viable epidermal redox state for a number of topical products. Of particular interest is the role of the particle coating, formulation used, and the presence of any enhancers. Multiphoton tomography with fluorescence lifetime imaging microscopy (MPT-FLIM) was used to simultaneously observe ZnO-NP penetration and potential metabolic changes within the viable epidermis of human volunteers after topical application of various ZnO-NP products. Coated and uncoated ZnO-NP remained in the superficial layers of the SC and in the skin furrows. We observed limited penetration of coated ZnO-NP dispersed in a water-in-oil emulsion formulation, which was predominantly localized adjacent to the skin furrow. However, the presence of ZnO-NP in the viable epidermis did not alter the metabolic state or morphology of the cells. In summary, our data suggest that some limited penetration of coated and uncoated ZnO-NP may occur into viable stratum granulosum epidermis adjacent to furrows, but that the extent is not sufficient to affect the redox state of those viable cells.
纳米氧化锌 (ZnO-NP) 在防晒霜和其他化妆品中的应用引起了公众健康关注。两个关键问题是暴露于 ZnO-NP 的程度以及 ZnO-NP 在防晒霜和化妆品中应用于人体后的潜在危害。我们的目的是评估通过 ZnO-NP 穿透到有活力的表皮的程度来进行暴露评估,并通过评估有活力的表皮氧化还原状态的变化来评估危害,针对多种局部产品。特别关注的是颗粒涂层、所用配方以及任何增强剂的存在的作用。多光子断层扫描与荧光寿命成像显微镜 (MPT-FLIM) 用于同时观察各种 ZnO-NP 产品局部应用后 ZnO-NP 穿透和有活力的表皮内潜在代谢变化。涂层和未涂层的 ZnO-NP 仍留在 SC 的浅层和皮肤皱纹中。我们观察到分散在油包水乳液配方中的涂层 ZnO-NP 的有限穿透,其主要定位于皮肤皱纹附近。然而,有活力的表皮中存在 ZnO-NP 并没有改变细胞的代谢状态或形态。总之,我们的数据表明,一些涂层和未涂层的 ZnO-NP 可能会有限地穿透到相邻皱纹的有活力的颗粒层表皮中,但程度不足以影响这些有活力的细胞的氧化还原状态。