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Using Raman spectroscopy to characterize biological materials

机译:使用拉曼光谱表征生物材料

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摘要

Raman spectroscopy can be used to measure the chemical composition of a sample, which can in turn be used to extract biological information. Many materials have characteristic Raman spectra, which means that Raman spectroscopy has proven to be an effective analytical approach in geology, semiconductor, materials and polymer science fields. The application of Raman spectroscopy and microscopy within biology is rapidly increasing because it can provide chemical and compositional information, but it does not typically suffer from interference from water molecules. Analysis does not conventionally require extensive sample preparation; biochemical and structural information can usually be obtained without labeling. In this protocol, we aim to standardize and bring together multiple experimental approaches from key leaders in the field for obtaining Raman spectra using a microspectrometer. As examples of the range of biological samples that can be analyzed, we provide instructions for acquiring Raman spectra, maps and images for fresh plant tissue, formalin-fixed and fresh frozen mammalian tissue, fixed cells and biofluids. We explore a robust approach for sample preparation, instrumentation, acquisition parameters and data processing. By using this approach, we expect that a typical Raman experiment can be performed by a nonspecialist user to generate high-quality data for biological materials analysis.
机译:拉曼光谱法可用于测量样品的化学成分,进而可用于提取生物学信息。许多材料具有特征性的拉曼光谱,这意味着拉曼光谱已被证明是地质,半导体,材料和聚合物科学领域的有效分析方法。拉曼光谱法和显微术在生物学中的应用正在迅速增加,因为它可以提供化学和成分信息,但通常不会受到水分子的干扰。分析通常不需要大量的样品准备;通常无需标签即可获得生化和结构信息。在此协议中,我们旨在标准化和整合来自该领域关键领导者的多种实验方法,以使用显微光谱仪获得拉曼光谱。作为可以分析的生物样品范围的示例,我们提供了有关获取拉曼光谱,新鲜植物组织,福尔马林固定和新鲜冷冻的哺乳动物组织,固定细胞和生物流体的拉曼光谱,图谱和图像的说明。我们探索了用于样品制备,仪器,采集参数和数据处理的可靠方法。通过使用这种方法,我们希望非专业用户可以执行典型的拉曼实验,以生成用于生物材料分析的高质量数据。

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