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Design of a Confocal Fluorescence Spectrometer for Transdermal Observation of Green Fluorescent Protein Expression in Cartilage.

机译:软骨中绿色荧光蛋白表达的透皮荧光光谱仪设计。

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We have developed a noninvasive confocal fluorescence spectrometer to measure in vivo fluorescence spectra in mice. Our motivation is the study of the healing process of wounded cartilage in the murine model. The spectrometer measures the expression of green fluorescent protein (GFP) which is linked to the promoter of type II collagen as a marker for the expression of the chondrocyte phenotype. The confocal system uses an argon ion laser (488 nm) to excite fluorescence in a confocal volume about 200 um below the skin surface in the cartilage of the xyphoid process. In vitro studies showed how the refractive mismatch at the surface boundary and the light scattering of the tissue affect the depth and size of the confocal volume. A thin fluorescent layer was detected through a 130 um tissue phantom (murine skin) by moving the confocal volume axially through the phantom. The presence of skin increased the axial full width at half maximum of the confocal response from 7 um to 72 um. In conclusion, we achieve a low-spatial-resolution confocal spectrometer, which yields a fluorescence spectrum that maximizes the GFP fluorescence of cartilage and minimizes the skin autofluorescence.
机译:我们开发了一种非侵入式共焦荧光光谱仪,用于测量小鼠中的体内荧光光谱。我们的动机是研究鼠模型中受伤软骨愈合过程的研究。光谱仪测量绿色荧光蛋白(GFP)的表达,其与II型胶原蛋白的启动子连接为用于表达软骨细胞表型的标记物。共聚焦系统使用氩离子激光(488nm)在X型工艺的软骨的软骨中约200μm的共聚焦体积中激发荧光。体外研究表明,表面边界和组织的光散射如何如何影响共焦体积的深度和尺寸。通过轴向通过虚线移动综合体积通过130μm组织体模体(鼠皮)来检测薄荧光层。皮肤的存在从7μm到72 um的共聚焦反应的半部最大值增加轴向全宽度。总之,我们实现了低空间分辨率的共聚焦光谱仪,产生了荧光光谱,可最大化软骨的GFP荧光,并最大限度地减少皮肤自发荧光。

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