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In vivo drug screening in human skin using femtosecond laser multiphoton tomography.

机译:使用飞秒激光多光子断层扫描在人体皮肤中进行体内药物筛选。

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摘要

The novel femtosecond laser multiphoton imaging system DermaInspect forin vivotomography of human skin was used to study the diffusion and intradermal accumulation of topically applied cosmetic and pharmaceutical components. Near-infrared 80 MHz picojoule femtosecond laser pulses were employed to excite endogenous fluorophores and fluorescent components of a variety of ointments via a two-photon excitation process. In addition, collagen was imaged by second harmonic generation. A high submicron spatial resolution and 50 ps temporal resolution was achieved using galvoscan mirrors and piezodriven focusing optics together with a time-correlated single-photon counting module with a fast microchannel plate detector. Individual intratissue cells, intracellular mitochondria, melanosomes, and the morphology of the nuclei as well as extracellular matrix elements were clearly visualized due to NAD(P)H, melanin, elastin, and collagen imaging and the calculation of fluorescence lifetime images. Nanoparticles and intratissue drugs were detected by two-photon-excited fluorescence. In addition, hydration effects and UV effects were studied by monitoring modifications of cellular morphology and autofluorescence. The system was used to observe the diffusion through the stratum corneum and the accumulation and release of functionalized nanoparticles along hair shafts and epidermal ridges. The novel noninvasive 4-D multiphoton tomography tool provides high-resolution optical biopsies with subcellular resolution, and offers for the first time the possibility to study in situ the diffusion through the skin barrier, long-term pharmacokinetics, and cellular response to cosmetic and pharmaceutical products.
机译:新型飞秒激光多光子成像系统DermaInspect对人体皮肤进行体内断层摄影术用于研究局部应用的化妆品和药物成分的扩散和皮内蓄积。使用近红外80 MHz皮焦耳飞秒激光脉冲通过双光子激发过程来激发各种软膏的内源性荧光团和荧光成分。另外,通过二次谐波产生使胶原成像。使用振镜和压电驱动的聚焦光学器件,以及带有时间相关的单光子计数模块和快速微通道板检测器,可以实现高亚微米空间分辨率和50 ps时间分辨率。由于NAD(P)H,黑色素,弹性蛋白和胶原蛋白成像以及荧光寿命图像的计算,单个组织内细胞,细胞内线粒体,黑素体,细胞核形态以及细胞外基质成分均清晰可见。纳米粒子和组织内药物通过双光子激发荧光检测。此外,通过监测细胞形态和自发荧光的变化研究了水合效应和紫外线效应。该系统用于观察通过角质层的扩散以及功能化纳米粒子沿发干和表皮隆起的积累和释放。新型的非侵入式4-D多光子层析成像工具可提供具有亚细胞分辨率的高分辨率光学活检,并且首次提供了就地研究通过皮肤屏障的扩散,长期药代动力学以及细胞对化妆品和药物的反应的可能性产品。

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