Raman spectroscopic study of transfected HEK293T cells

Joel Joshi , Santiago Sanchez-Cortes , Narahari V. Joshi , Enrique Aguado , Francisco J. Garcia-Cozar
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Abstract

Raman spectroscopy is a vibrational spectroscopic technique for assessing molecular motion and fingerprinting species, which can be used for the identification of molecules in living cells. We have obtained Raman spectra from HEK293T cells expressing a single transgene in order to analyze whether this technique could be of interest as a tool for identifying subtle changes in gene expression. Spectrum obtained from cells expressing the transgene exhibit features indicating that active vibrational modes related to phenylalanine residues are dominant. Similarly, CO stretching mode of a functional carboxylic acid group is absent in transfected cells. In addition to these significant changes, oscillatory strengths of several vibrational modes are altered. The present analysis suggests that Raman spectrum could be a tool to identify changes due to the expression of a single gene.

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转染HEK293T细胞的拉曼光谱研究
拉曼光谱是一种用于评估分子运动和物种指纹的振动光谱技术,可用于鉴定活细胞中的分子。我们从表达单一转基因的HEK293T细胞中获得了拉曼光谱,以分析该技术是否可以作为识别基因表达细微变化的工具。从表达转基因的细胞中获得的光谱显示出与苯丙氨酸残基相关的主动振动模式占主导地位的特征。同样,在转染的细胞中不存在功能羧酸基团的CO拉伸模式。除了这些显著的变化外,几种振动模式的振荡强度也发生了变化。目前的分析表明,拉曼光谱可能是一种工具,以确定由于单一基因的表达变化。
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