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Characterization of optical properties of ZnO nanoparticles for quantitative imaging of transdermal transport

机译:ZnO纳米粒子的光学性质表征用于透皮运输的定量成像

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摘要

Widespread applications of ZnO nanoparticles (NP) in sun-blocking cosmetic products have raised safety concerns related to their potential transdermal penetration and resultant cytotoxicity. Nonlinear optical microscopy provides means for high-contrast imaging of ZnO NPs lending in vitro and in vivo assessment of the nanoparticle uptake in skin, provided their nonlinear optical properties are characterized. We report on this characterization using ZnO NP commercial product, Zinclear, mean-sized 21 nm. Two-photon action cross-section of this bandgap material (Ebg = 3.37 eV, λbg = 370 nm) measured by two techniques yielded consistent results of ηZnOσZnO(2ph) = 6.2 ± 0.8 μGM at 795 nm, and 32 ± 6 μGM at 770 nm per unit ZnO crystal cell, with the quantum efficiency of ηZnO = (0.9 ± 0.2) %. In order to demonstrate the quantitative imaging, nonlinear optical microscopy images of the excised human skin topically treated with Zinclear were acquired and processed using σZnO(2ph) and ηZnOvalues yielding nanoparticle concentration map in skin. Accumulations of Zinclear ZnO nanoparticles were detected only on the skin surface and in skin folds reaching concentrations of 800 NPs per μm3.
机译:ZnO纳米颗粒(NP)在防晒化妆品中的广泛应用引起了人们对其潜在的透皮渗透和细胞毒性的安全性关注。非线性光学显微镜提供了对高对比度成像的ZnO NPs进行体外成像和体内评估皮肤中纳米颗粒吸收的手段,只要它们的非线性光学特性得以表征。我们使用ZnO NP商业产品Zinclear,平均大小为21 nm报告了这种表征。通过两种技术测量的该带隙材料的双光子作用截面(Ebg = 3.37 eV,λbg= 370 nm)产生了一致的 η Z n O σ Z n O 2 p h = ZnO晶体单元在795 nm处为6.2±0.8μGM,在770 nm处为32±6μGM ,其量子效率为ηZnO=(0.9±0.2)%。为了证明定量成像,使用 σ Z n O 2 p h 和ηZnO值在皮肤中产生纳米颗粒浓度图。仅在皮肤表面和皮肤褶皱中检测到Zinclear ZnO纳米颗粒的积累,浓度达到800 NPs /μm 3

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