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Label-Free Raman Hyperspectral Imaging of Single Cells Cultured on Polymer Substrates

机译:在聚合物基质上培养的单细胞的无标记拉曼高光谱成像

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摘要

While Raman hyperspectral imaging has been widely used for label-free mapping of biomolecules in cells, these measurements require the cells to be cultured on weakly Raman scattering substrates. However, many applications in biological sciences and engineering require the cells to be cultured on polymer substrates that often generate large Raman scattering signals. Here, we discuss the theoretical limits of the signal-to-noise ratio in the Raman spectra of cells in the presence of polymer signals and how optical aberrations may affect these measurements. We show that Raman spectra of cells cultured on polymer substrates can be obtained using automatic subtraction of the polymer signals and demonstrate the capabilities of these methods in two important applications: tissue engineering and in vitro toxicology screening of drugs. Apart from their scientific and technological importance, these applications are examples of the two most common measurement configurations: (1) cells cultured on an optically thick polymer substrate measured using an immersion/dipping objective; and (2) cells cultured on a transparent polymer substrate and measured using an inverted optical microscope. In these examples, we show that Raman hyperspectral data sets with sufficient quality can be successfully acquired to map the distribution of common biomolecules in cells, such as nucleic acids, proteins, and lipids, as well as detecting the early stages of apoptosis. We also discuss strategies for further improvements that could expand the application of Raman hyperspectral imaging on polymer substrates even further in biomedical sciences and engineering.
机译:尽管拉曼高光谱成像已广泛用于细胞中生物分子的无标记作图,但这些测量要求将细胞培养在弱拉曼散射底物上。然而,在生物科学和工程学中的许多应用都要求将细胞培养在通常会产生大拉曼散射信号的聚合物基质上。在这里,我们讨论了在存在聚合物信号的情况下细胞的拉曼光谱中信噪比的理论极限,以及光学像差如何影响这些测量。我们显示可以使用聚合物信号的自动减法获得在聚合物基质上培养的细胞的拉曼光谱,并证明这些方法在两个重要应用中的功能:组织工程和药物体外毒理学筛查。除了其科学和技术重要性外,这些应用还包括两种最常见的测量配置示例:(1)使用浸没/浸渍物镜测量的光学厚度的聚合物基质上培养的细胞; (2)在透明聚合物基质上培养并用倒置光学显微镜测量的细胞。在这些示例中,我们显示可以成功获取具有足够质量的拉曼高光谱数据集,以绘制细胞中常见生物分子(例如核酸,蛋白质和脂质)的分布图,并检测凋亡的早期阶段。我们还讨论了进一步改进的策略,这些策略可能会进一步扩展拉曼高光谱成像在聚合物基质上的应用,甚至进一步扩展到生物医学科学和工程领域。

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