首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Micro Raman spectroscopy for monitoring alterations between human skin keratinocytes HaCaT and their tumorigenic derivatives A5RT3-toward a Raman characterization of a skin carcinoma model
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Micro Raman spectroscopy for monitoring alterations between human skin keratinocytes HaCaT and their tumorigenic derivatives A5RT3-toward a Raman characterization of a skin carcinoma model

机译:显微拉曼光谱法用于监测人类皮肤角质形成细胞HaCaT及其致癌衍生物A5RT3之间的变化,从而对皮肤癌模型进行拉曼表征

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摘要

Raman scattering provides molecular information about biochemical differences between healthy and cancerous cells in a non-invasive and non-destructive fashion. We have monitored such changes for the human skin keratinocyte cell line HaCaT and its cancerogenic counterpart A5RT3 at 514.5 and 647 nm excitations, with either fixed-cell droplets or adherent fixed and living cells for repeated preparations over time in order to discriminate intrinsic characteristic changes. Cell droplets yielded average but rather reproducible information and helped to rapidly determine such changes. The Raman spectra show differences in the relative intensity ratios of the protein amide I band at 1656 cm(-1) and amide III bands around 1250 cm(-1) and of the phenylalanine ring mode at 1003.6 cm(-1) to the CH2 deformation band at 1448 cm(-1), which are considerably greater for HaCaT cells than A5RT3 cells. Interestingly, these observations were accompanied by severe and consistent changes in the amide III region and in the collagen marker region around 936 cm(-1), therefore providing an unambiguous evidence of protein degradation and changes in the essential amino acid phenylalanine and in the lipid components in tumorigenic A5RT3 cells. Ultimately, in light of these intrinsic changes, the present findings are consistent with the passage number of the non-tumorigenic HaCaT cells, because low pass HaCaT showed less pronounced alterations than high pass HaCaT, suggesting a correlation of tumorigenic transformation with primarily genetic instabilities in HaCaT cells. This work represents the first Raman spectroscopy discrimination of the skin carcinoma model cell lines, the non-tumorigenic HaCaT and the cancerous A5RT3 cells, addressing the importance of delineating nonspecific variations from intrinsic characteristic changes and giving a spectroscopic indication for the influence of the passage number of HaCaT cells on the tumorigenic development.
机译:拉曼散射以非侵入性和非破坏性方式提供有关健康细胞和癌细胞之间生化差异的分子信息。我们已经在514.5和647 nm激发下监测了人类皮肤角质形成细胞细胞系HaCaT及其致癌对应物A5RT3的这种变化,通过固定细胞滴或粘附的固定细胞和活细胞随时间重复进行制备,以区分内在特征变化。细胞滴产生平均但可重现的信息,有助于快速确定此类变化。拉曼光谱显示,在1656 cm(-1)处的蛋白质酰胺I带和在1250 cm(-1)附近的酰胺III带与在1003.6 cm(-1)处的苯丙氨酸环模式的相对强度比之间的差异HaCaT细胞在1448 cm(-1)处的形变带明显大于A5RT3细胞。有趣的是,这些观察结果伴随着酰胺III区域和936 cm(-1)附近胶原标记区域的严重且一致的变化,因此提供了蛋白质降解以及必需氨基酸苯丙氨酸和脂质变化的明确证据。致瘤性A5RT3细胞中的成分。最终,鉴于这些内在变化,本研究结果与非致瘤性HaCaT细胞的传代次数一致,因为低通HaCaT的变化不如高通HaCaT明显,这表明致瘤性转化与主要的遗传不稳定性相关。 HaCaT细胞。这项工作代表了皮肤癌模型细胞系,非致瘤性HaCaT和癌性A5RT3细胞的首次拉曼光谱判别,强调了从内在特征变化描述非特异性变异的重要性,并为分批数的影响提供了光谱学指示HaCaT细胞对致瘤性发展的影响。

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