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Photobleaching of arterial autofluorescence for immunofluorescenceapplications

机译:动脉自体荧光的光漂白在免疫荧光中的应用

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摘要

Immunohistochemical localization of low-level antigens in the arterial vasculature is complicated by the presence of complex molecules such as collagen, elastin, cholesterol,and fluorescent lipids that exhibit autofluorescence over a wide spectrum of wavelengths. UV irradiation of arterial vasculature has remained ineffective in preparing samples for immunofluorescent staining because of the recovery of the endogenous fluorescence within a short time following treatment. Therefore, we sought to further enhance the signal-to-noise ratio in arteries by optimizing the photobleaching of this tissue. We report here that the use of filtered sunlight significantly reduces arterial autofluorescence compared to standard UV shortwave and longwave irradiation and maintains multiple antigen epitopes suitable for immunohistochemical analysis. Using this method, we localized low-level laminin-5 isoform expression in situ, which was previously indistinguishable from endogenous autofluorescence.
机译:低水平抗原在动脉血管系统中的免疫组织化学定位因存在复杂分子(例如胶原蛋白,弹性蛋白,胆固醇和荧光脂质)而复杂化,这些复杂分子在很宽的波长范围内表现出自发荧光。由于处理后短时间内内源性荧光的恢复,动脉血管的紫外线照射在制备用于免疫荧光染色的样品方面仍然无效。因此,我们寻求通过优化该组织的光漂白来进一步增强动脉的信噪比。我们在这里报告,与标准的紫外线短波和长波照射相比,使用过滤后的阳光显着降低了动脉自发荧光,并保持了适用于免疫组织化学分析的多种抗原表位。使用这种方法,我们就地定位了低水平的层粘连蛋白5同工型表达,这以前与内源性自发荧光没有区别。

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