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首页> 外文期刊>Biochemical and Biophysical Research Communications >Label-free biochemical imaging of heart tissue with high-speed spontaneous Raman microscopy.
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Label-free biochemical imaging of heart tissue with high-speed spontaneous Raman microscopy.

机译:高速自发拉曼显微镜对心脏组织的无标记生化成像。

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摘要

Label-free imaging is desirable for elucidating morphological and biochemical changes of heart tissue in vivo. Spontaneous Raman microscopy (SRM) provides high chemical contrast without labeling, but presents disadvantage in acquiring images due to low sensitivity and consequent long imaging time. Here, we report a novel technique for label-free imaging of rat heart tissues with high-speed SRM combined with resonance Raman effect of heme proteins. We found that individual cardiomyocytes were identified with resonance Raman signal arising mainly from reduced b- and c-type cytochromes, and that cardiomyocytes and blood vessels were imaged by distinguishing cytochromes from oxy- and deoxy-hemoglobin in intact hearts, while cardiomyocytes and fibrotic tissue were imaged by distinguishing cytochromes from collagen type-I in infarct hearts with principal component analysis. These results suggest the potential of SRM as a label-free high-contrast imaging technique, providing a new approach for studying biochemical changes, based on the molecular composition, in the heart.
机译:无标记成像对于阐明体内心脏组织的形态和生化变化是理想的。自发拉曼显微镜(SRM)无需标记即可提供高化学反差,但由于灵敏度低且成像时间长,因此在获取图像时存在缺点。在这里,我们报告一种新技术的高速SRM与血红素蛋白的共振拉曼效应相结合的大鼠心脏组织的无标签成像。我们发现单个心肌细胞的共振拉曼信号主要来自b型和c型细胞色素的减少,并且心肌细胞和血管的成像是通过区分完整心脏中氧合和脱氧血红蛋白的细胞色素,而心肌细胞和纤维化组织通过区分梗塞心脏中I型胶原的细胞色素来成像。这些结果表明,SRM作为无标记高对比度成像技术的潜力,为基于分子组成的心脏生化变化研究提供了一种新方法。

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