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首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >The use of synchrotron infrared microspectroscopy in biological and biomedical investigations
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The use of synchrotron infrared microspectroscopy in biological and biomedical investigations

机译:同步加速器红外光谱技术在生物和生物医学研究中的应用

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摘要

Synchrotron radiation is a bright source of infrared (IR) photons. It has been exploited in microscopy, where much smaller areas can be probed, with sizes close to the diffraction limit. The experiments have been performed at two balmines, one at the National Synchrotron Light Source (USA) and one at SuperACO, LURE (France). The potentiality of this microanalytical synchrotron-based techninque is particularly well documented in the study of individual cells: functional groups imaging representing biochemical changes have been obtained at various states of mitosis and apotosis. The higher spatial resolution and spectral quality achieved allows investigating biological tissues in more detail. In this work, this is exemplified in the study of human hair and skin, where, in both cases, highly localized compounds have been evidenced in specific areas of the analyzed tissues: high lipid concentration inside the hair medulla, and inside the Stratum Corneum (SC) of skin. Moreover, the lineshape and frequency position of the CH_2 stretching mode indicates a highly ordered phase extending over almost all the Stratum Cornheum. The penetration pathway of an external agent has been also studied for both hair and skin. It is clear that synchrotron-bsed infrared microspectroscopy is an external agent has been also studied for both hair and skin. It is clear that synchrotron-based infrared microspectroscopy is an extremely valuable analytical tool when determining the spatially resolved chemical composition of biological and biomedical samples. In the future, the combination of infrared microspectroscopy with other synchrotron-based microscopic techniques, such as X-ray microscopy, at the same sample location is discussed.
机译:同步辐射是红外(IR)光子的明亮来源。它已被用于显微镜下,可以探测到更小的区域,尺寸接近衍射极限。实验是在两种香脂剂上进行的,一种在国家同步加速器光源(美国)上,一种在SuperACO,LURE(法国)上进行。这种基于微分析的基于同步加速器的技术的潜力在单个细胞的研究中特别有据可查:在有丝分裂和凋亡的各种状态下,获得了代表生化变化的官能团成像。获得的更高的空间分辨率和光谱质量允许更详细地研究生物组织。在这项工作中,这在人类头发和皮肤的研究中得到了例证,在这两种情况下,均已在分析组织的特定区域证实了高度局部化的化合物:头发髓质和角质层内部的高脂质浓度( SC)的皮肤。此外,CH_2拉伸模式的线形和频率位置表明几乎在整个角质层上都有一个高度有序的相。还已经研究了外部试剂对头发和皮肤的渗透途径。显然,同步加速器红外光谱是外发剂,也已用于头发和皮肤。显然,当确定生物和生物医学样品的空间分辨化学成分时,基于同步加速器的红外光谱是一种非常有价值的分析工具。将来,将讨论在同一样品位置将红外光谱技术与其他基于同步加速器的显微技术(例如X射线显微镜)相结合的问题。

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