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Detection of molecular processes in the intact retina by ATR-FTIR spectromicroscopy

机译:通过ATR-FTIR光谱技术检测完整视网膜中的分子过程

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We used Fourier transform infrared spectromicroscopy in the attenuated total reflection configuration to study biochemical events associated with the response to light of an intact retina. We show that the technique is suitable for the detection in real time of molecular processes occurring in rod outer segments induced by light absorption. Two-dimensional correlation analysis was applied to the identification and interpretation of specific spectral changes associated to the evolution of the system. The technique allows us to observe an extensive protein translocation, which we interpret as arising from the release of transducin from the disk membrane and its redistribution from the outer segment towards the inner segment of rod cells. These results are in full agreement with our current understanding of retinal physiology and validate the technique as a useful tool for the study of complex molecular processes in intact tissue.
机译:我们在衰减的全反射配置中使用傅立叶变换红外光谱法研究了与完整视网膜对光的反应相关的生化事件。我们表明该技术适合实时检测由光吸收引起的杆外段中发生的分子过程。二维相关分析被用于识别和解释与系统演化相关的特定光谱变化。该技术使我们能够观察到广泛的蛋白易位,我们认为这是由于转导蛋白从盘状膜的释放以及其从杆状细胞外部向内部的重新分布而引起的。这些结果与我们目前对视网膜生理的理解完全吻合,并验证了该技术是研究完整组织中复杂分子过程的有用工具。

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