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Fourier-Transform Infrared Spectroscopy (FTIR) for Investigation of Human Carcinoma and Leukaemia

机译:傅里叶变换红外光谱 (FTIR) 用于研究人类癌和白血病

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摘要

Biological contents like carbohydrate play an important role in the composition of cells and tissues in the body. The aim of the study was to compare Fourier-transform infrared spectroscopy (FTIR) spectra of normal and cancer tissues at different wavelengths and frequencies and to detect changes in chemical composition of these contents. A total 50 tissue samples of all types of cancer were taken: 10 were basal cell carcinoma (BCC) of skin; 10 were prostate; 10 were ovary; 10 were kidney tumour renal cell carcinoma (RCC); and 10 were leukaemia. All were collected and analysed by generating FTIR spectra in the absorbance mode, mostly in the finger print region of 950 to 1800 cm~(-1). The FTIR spectra showed the characteristic differences and changes in intensities due to absorbance that indicate the potential differences in the metabolic rates of the examined samples. Important peaks are observed at wavenumbers 927, 964, 970, 982, 1041, 1078, 1141, 1299 and 1337 cm~(-1), showing changes in deoxyribonucleic acid is (DNA), polysaccharides, glycogen, amide III (proteins), collagen, etc. in BCC of skin. The numerous waveform shifts in other types of cancers are also observed at different regions of spectra as results of changes in their compositions at different frequencies. We conclude that biological contents are changed in the tumours according to the type and stage of the cancer. Left-handed helix (DNA Z-form), collagen, carbohydrate, and glycogen can be used as potential biomarker in this study.
机译:碳水化合物等生物成分在体内细胞和组织的组成中起着重要作用。该研究的目的是比较不同波长和频率下正常组织和癌症组织的傅里叶变换红外光谱(FTIR),并检测这些内容物的化学成分变化。共采集了50份各类癌症的组织样本:皮肤基底细胞癌(BCC)10例;10例为前列腺;10例为卵巢;肾肿瘤肾细胞癌(RCC)10例;10例为白血病。在吸光度模式下,通过生成FTIR光谱进行收集和分析,主要在950-1800 cm~(-1)的指纹区域。傅里叶变换红外光谱显示了特征差异和吸光度引起的强度变化,表明了所检查样品代谢速率的潜在差异。在波数927、964、970、982、1041、1078、1141、1299和1337 cm~(-1)处观察到重要的峰值,显示皮肤基底细胞癌中脱氧核糖核酸(DNA)、多糖、糖原、酰胺III(蛋白质)、胶原蛋白等的变化。在光谱的不同区域也观察到其他类型癌症的大量波形偏移,这是它们在不同频率下的组成变化的结果。我们得出结论,肿瘤中的生物含量会根据癌症的类型和阶段而改变。左旋螺旋(DNA Z 型)、胶原蛋白、碳水化合物和糖原可作为本研究的潜在生物标志物。

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