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Chemical enhancer induced changes in the mechanisms of transdermal delivery of zinc oxide nanoparticles.

机译:化学促进剂引起氧化锌纳米粒子透皮递送机制的改变。

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摘要

The overlapping wavelength of photoluminescence (PL) of zinc oxide nanoparticles (ZnO NPs) and autofluorescence (AF) from the stratum corneum (SC) has for a long time held back researchers from investigating the chemically enhanced penetration pathways of ZnO NPs into the SC lipids. However, the non-linear polarization effect of second harmonic generation (SHG) may be used for ZnO NPs to be distinguished from the AF of the SC. This study combined the SHG of ZnO NPs and the AF of the SC to image the transdermal delivery of ZnO NPs under the chemical enhancer conditions of oleic acid (OA), ethanol (EtOH) and oleic acid-ethanol (OA-EtOH). In addition to qualitative imaging, the microtransport properties of ZnO NPs were quantified to give the enhancements of the vehicle-to-skin partition coefficient (K), the SHG intensity gradient (G) and the effective diffusion path length (L). The results showed that OA, EtOH and OA-EtOH were all capable of enhancing the transdermal delivery of ZnO NPs by increasing the intercellular lipid fluidity or extracting lipids from the SC.
机译:氧化锌纳米颗粒(ZnO NPs)和角质层(SC)的自发荧光(AF)重叠的光致发光波长长期以来一直阻碍研究人员研究ZnO NPs化学增强的渗透途径进入SC脂质的过程。但是,二次谐波产生(SHG)的非线性极化效应可用于ZnO NP与SC的AF区别。这项研究结合了ZnO NPs的SHG和SC的AF,以成像在油酸(OA),乙醇(EtOH)和油酸-乙醇(OA-EtOH)的化学增强剂条件下ZnO NPs的透皮递送。除了定性成像外,还对ZnO NP的微传输特性进行了量化,以增强车辆与皮肤的分配系数(K),SHG强度梯度(G)和有效扩散路径长度(L)。结果表明,OA,EtOH和OA-EtOH均能够通过增加细胞间脂质的流动性或从SC中提取脂质来增强ZnO NP的透皮递送。

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