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Infrared spectroscopic studies of myeloid leukemia (ML-1) cells at different phases of the cell cycle

机译:细胞周期不同阶段的骨髓白血病(ML-1)细胞的红外光谱研究

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Advances in infrared spectroscopic methodology permit excellent infrared spectra to be collected from objects as small as single human cells. These advances have lead to an increased interest of the use of infrared spectroscopy as a medical diagnostic tool. Infrared spectra of myeloid leukemia (ML-1) cells are reported for cells derived from an asynchronous, exponentially-growing culture, as well as for cells that were fractionated according to their stage within the cell division cycle. The observed results suggest that the cells' DNA is detectable by infrared spectroscopy mainly when the cell is in the S phase, during the replication of DNA. In the G1 and G2 phases, the DNA is so tightly packed in the nucleus that it appears opaque to infrared radiation. Consequently, the nucleic acid spectral contributions in the G1 and G2 phases would be mostly that of cytoplasmic RNA. These results suggest that infrared spectral changes observed earlier between normal and abnormal cells may have been due to different distributions of cells within the stages of the cell division cycle.
机译:红外光谱方法的进展允许从作为单一人细胞的物体中收集优异的红外光谱。这些进展导致使用红外光谱作为医疗诊断工具的利益。据报道,粘虫白血病(ML-1)细胞的红外光谱均针对来自异步,指数增长的培养物,以及根据细胞分裂循环内的阶段分级的细胞。所观察结果表明,在DNA的复制期间,当细胞在S相处于S期时,细胞的DNA是通过红外光谱检测的。在G1和G2阶段中,DNA如此紧密地填充在核中,其看起来对红外辐射看起来不透明。因此,G1和G2阶段中的核酸光谱贡献主要是细胞质RNA的贡献。这些结果表明,在细胞分裂周期的阶段内的细胞分布不同,在正常和异常细胞之间观察到的红外光谱变化可能是由于细胞分裂周期的阶段的不同。

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