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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >In vivo quantitative molecular absorption of glycerol in human skin using coherent anti-Stokes Raman scattering (CARS) and two-photon auto-fluorescence
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In vivo quantitative molecular absorption of glycerol in human skin using coherent anti-Stokes Raman scattering (CARS) and two-photon auto-fluorescence

机译:使用相干抗斯托克斯拉曼散射(汽车)和双光子自动荧光,在人体皮肤中甘油的体内定量分子吸收

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摘要

The penetration of small molecules through the human skin is a major issue for both safety and efficacy issues in cosmetics and pharmaceutic domains. To date, the quantification of active molecular compounds in human skin following a topical application uses ex vivo skin samples mounted on Franz cell diffusion set-up together with appropriate analytical methods. Coherent anti-Stokes Raman scattering (CARS) has also been used to perform active molecule quantification on ex vivo skin samples, but no quantification has been described in human skin in vivo. Here we introduce and validate a framework for imaging and quantifying the active molecule penetration into human skin in vivo. Our approach combines nonlinear imaging microscopy modalities, such as two-photon excited auto-fluorescence (TPEF) and coherent anti-Stokes Raman scattering (CARS), together with the use of deuterated active molecules. The imaging framework was exemplified on topically applied glycerol diluted in various vehicles such as water and xanthan gel. In vivo glycerol quantitative percutaneous penetration over time was demonstrated, showing that, contrary to water, the xanthan gel vehicle acts as a film reservoir that releases glycerol continuously over time. More generally, the proposed imaging framework provides an enabling platform for establishing functional activity of topically applied products in vivo.
机译:小分子通过人体皮肤渗透是化妆品和药物结构域的安全性和有效问题的主要问题。迄今为止,局部应用后,人体皮肤中的活性分子化合物的定量使用,使用安装在Franz细胞扩散组上的前体内皮肤样品以及适当的分析方法。相干的反斯托克斯拉曼散射(汽车)也已用于对离体皮样品进行活性分子定量,但在体内的人体皮肤中没有描述量化。在这里,我们介绍并验证了一种框架,用于成像和量化体内人体皮肤中的活性分子渗透。我们的方法将非线性成像显微镜模型组合,例如双光子激发的自动荧光(TPEF)和相干的反斯托克斯拉曼散射(汽车)以及使用氘化活性分子。在局部施加在各种载体(如水和黄原凝胶)中稀释的甘油的举例说明了成像框架。在体内甘油定量经皮渗透随着时间的推移,表明,与水相反,黄原凝胶载体用作薄膜储存器,其连续随时间释放甘油。更一般地,所提出的成像框架提供了一种用于在体内建立局部应用产品的功能活性的能力平台。

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