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Performance of line-scan Raman microscopy for high- throughput chemical imaging of cell population

机译:线扫描拉曼显微镜对细胞群进行高通量化学成像的性能

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We evaluate the performance of line-scan Raman microscopy (LSRM), a versatile label-free technique, for high-throughput chemical imaging of cell population. We provide detailed design and configuration of a home-built LSRM system developed in our laboratory. By exploiting parallel acquisition, the LSRM system achieves a significant throughput advantage over conventional point-scan Raman microscopy by projecting a laser line onto the sample and imaging the Raman scattered light from the entire line using a grating spectrograph and a charge-coupled device (CCD) camera. Two-dimensional chemical maps can be generated by scanning the projected line in the transverse direction. The resolution in the x and y direction has been characterized to be ~600-800 nm for 785 nm laser excitation. Our system enables rapid classification of microparticles with similar shape, size, and refractive index based on their chemical composition. An equivalent imaging throughput of 100 microparticles/s for 1 μm polystyrene beads has been achieved. We demonstrate the application of LSRM to imaging bacterial spores by identifying endogenous calcium dipicolinate. We also demonstrate that LSRM enables the study of intact microalgal cells at the colonial level and the identification of intra- and extracellular chemical constituents and metabolites, such as chlorophyll, carotenoids, lipids, and hydrocarbons. We conclude that LSRM can be an effective and practical tool for obtaining endogenous microscopic chemical and molecular information from cell population.
机译:我们评估线扫描拉曼显微镜(LSRM)的性能,一种通用的无标记技术,用于细胞群的高通量化学成像。我们提供在实验室中开发的家用LSRM系统的详细设计和配置。通过利用并行采集,LSRM系统通过将激光线投射到样品上并使用光栅光谱仪和电荷耦合器件(CCD)对整个线的拉曼散射光进行成像,从而获得了优于常规点扫描拉曼显微镜的显着吞吐量优势。 )相机。可以通过在横向方向上扫描投影线来生成二维化学图。在785 nm激光激发下,x和y方向的分辨率被表征为〜600-800 nm。我们的系统能够根据其化学成分对具有相似形状,尺寸和折射率的微粒进行快速分类。对于1μm的聚苯乙烯珠,其等效成像吞吐量为100微粒/秒。我们通过鉴定内源性吡啶二羧酸钙证明了LSRM在细菌孢子成像中的应用。我们还证明了LSRM能够在结肠水平上研究完整的微藻细胞,并能识别细胞内和细胞外化学成分和代谢产物,例如叶绿素,类胡萝卜素,脂质和碳氢化合物。我们得出结论,LSRM可以是从细胞群体中获取内源性微观化学和分子信息的有效且实用的工具。

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