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Individual human cell responses to low doses of chemicals studied by synchrotron infrared spectromicroscopy

机译:同步加速器红外光谱显微镜研究单个人细胞对低剂量化学品的反应

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Abstract: Vibrational spectroscopy, when combined with synchrotron radiation-based (SR) microscopy, is a powerful new analytical tool with high spatial resolution for detecting biochemical changes in the individual living cells. In contrast to other microscopy methods that require fixing, drying, staining or labeling, SR-FTIR microscopy probes intact living cells providing a composite view of all of the molecular response and the ability to monitor the response over time in the same cell. Observed spectral changes include all types of lesions induced in that cell as well as cellular responses to external and internal stresses. These spectral changes combined with other analytical tools may provide a fundamental understanding of the key molecular mechanisms induced in response to stresses created by low- doses of chemicals. In this study we used the high spatial - resolution SR-FTIR vibrational spectromicroscopy as a sensitive analytical tool to detect chemical- and radiation- induced changes in individual human cells. Our preliminary spectral measurements indicate that this technique is sensitive enough to detect changes in nucleic acids and proteins of cells treated with environmentally relevant concentrations of dioxin. This technique has the potential to distinguish changes from exogenous or endogenous oxidative processes. Future development of this technique will allow rapid monitoring of cellular processes such as drug metabolism, early detection of disease, bio- compatibility of implant materials, cellular repair mechanisms, self assembly of cellular apparatus, cell differentiation and fetal development. !39
机译:摘要:振动光谱法与基于同步加速器辐射(SR)的显微镜相结合,是一种功能强大的,具有高空间分辨率的新型分析工具,可用于检测单个活细胞中的生化变化。与其他需要固定,干燥,染色或标记的显微镜方法相比,SR-FTIR显微镜探针完整的活细胞可提供所有分子响应的复合视图以及在同一细胞中随时间监测响应的能力。观察到的光谱变化包括在该细胞中诱导的所有类型的损伤以及细胞对外部和内部压力的反应。这些光谱变化与其他分析工具的结合可以提供对由低剂量化学品产生的应力响应所诱导的关键分子机制的基本了解。在这项研究中,我们使用高空间分辨率SR-FTIR振动光谱显微镜作为灵敏的分析工具来检测化学和辐射诱导的人体单个细胞的变化。我们的初步光谱测量表明,该技术足够灵敏,可以检测环境相关浓度的二恶英处理后的细胞核酸和蛋白质的变化。该技术具有将变化与外源或内源性氧化过程区分开来的潜力。该技术的未来发展将允许快速监测细胞过程,例如药物代谢,疾病的早期检测,植入物材料的生物相容性,细胞修复机制,细胞装置的自组装,细胞分化和胎儿发育。 !39

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