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Diagnosis of Cell Death by Means of Infrared Spectroscopy

机译:红外光谱法诊断细胞死亡

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摘要

Fourier transform infrared (FTIR) spectroscopy has been established as a fast spectroscopic method for biochemical analysis of cells and tissues. In this research we aimed to investigate FTIR's utility for identifying and characterizing different modes of cell death, using leukemic cell lines as a model system. CCRF-CEM and U937 leukemia cells were treated with arabinoside and doxorubicin apoptosis inducers, as well as with potassium cyanide, saponin, freezing-thawing, and H2O2 necrosis inducers. Cell death mode was determined by various gold standard biochemical methods in parallel with FTIR-microscope measurements. Both cell death modes exhibit large spectral changes in lipid absorbance during apoptosis and necrosis; however, these changes are similar and thus cannot be used to distinguish apoptosis from necrosis. In contrast to the above confounding factor, our results reveal that apoptosis and necrosis can still be distinguished by the degree of DNA opaqueness to infrared light. Moreover, these two cell death modes also can be differentiated by their infrared absorbance, which relates to the secondary structure of total cellular protein. In light of these findings, we conclude that, because of its capacity to monitor multiple biomolecular parameters, FTIR spectroscopy enables unambiguous and easy analysis of cell death modes and may be useful for biochemical and medical applications.
机译:傅里叶变换红外(FTIR)光谱已被确立为一种用于细胞和组织生化分析的快速光谱方法。在这项研究中,我们旨在研究FTIR在使用白血病细胞系作为模型系统识别和表征不同细胞死亡方式方面的效用。 CCRF-CEM和U937白血病细胞用阿糖苷和阿霉素凋亡诱导剂以及氰化钾,皂苷,冻融和H2O2坏死诱导剂处理。细胞死亡模式是通过各种金标准生化方法与FTIR显微镜测量同时测定的。两种细胞死亡模式在细胞凋亡和坏死过程中均表现出较大的脂质吸收光谱变化。然而,这些变化是相似的,因此不能用于区分凋亡和坏死。与上述混杂因素相反,我们的结果表明,细胞凋亡和坏死仍然可以通过DNA对红外光的不透明程度来区分。此外,这两种细胞死亡模式还可以通过其红外吸收来区分,红外吸收与总细胞蛋白的二级结构有关。根据这些发现,我们得出结论,由于FTIR光谱仪具有监测多个生物分子参数的能力,因此可以明确而轻松地分析细胞死亡模式,并且可能对生化和医学应用有用。

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