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Collagen types analysis and differentiation by FTIR spectroscopy

机译:FTIR光谱分析和区分胶原蛋白

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摘要

Abnormal formation and organization of collagen network is commonly observed in many organ pathologies, but analytical techniques able to reveal the collagen biodistribution are still lacking. In this study, Fourier-transform infrared (FTIR) spectroscopy has been used to analyze type I, III, IV, V, and VI collagens, the most important compounds of connective tissues. A robust classification of 30 FTIR spectra per collagen type could be obtained by using a combination of four spectral intervals [ν(C=O) absorption of amide I (1,700–1,600 cm?1), δ(CH2), and δ(CH3) absorptions (1,480–1,350 cm?1), ν(C–N), and δ(N–H) absorptions of amide III (1,300–1,180 cm?1), and ν(C–O) and ν(C–O–C) absorptions of carbohydrate moieties (1,100–1,005 cm?1)]. Then, a submolecular justification of this classification model was sought using a curve fitting analysis of the four spectral intervals. Results demonstrated that every spectral interval used for the classification contained highly discriminant absorption bands between all collagen types (multivariate analysis of variance, p < 0.01; Dunnett's T3 post hoc test, p < 0.05). All conditions seem thus joined to make FTIR spectroscopy and imaging major tools for implementing innovative methods in the field of molecular histology, which would be very helpful for the diagnosis of a wide range of pathologies.
机译:在许多器官病理中通常观察到胶原网络的异常形成和组织,但是仍然缺乏能够揭示胶原生物分布的分析技术。在这项研究中,傅里叶变换红外(FTIR)光谱已用于分析I,III,IV,V和VI型胶原,这是结缔组织最重要的化合物。通过结合四个光谱区间[酰胺(I,1,700–1,600 cm?1 )的吸收(ν(C = O)),δ(CH2 )和δ(CH3 )吸收(1,480–1,350 cm?1 ),ν(C–N)和δ(N–H)吸收的酰胺III(1,300–1,180 cm ?1 ),以及碳水化合物部分(1,100–1,005 cm?1 )的ν(OC)和ν(OC)的吸收]。然后,使用四个光谱区间的曲线拟合分析寻求该分类模型的亚分子合理性。结果表明,用于分类的每个光谱间隔在所有胶原类型之间均包含高度区分的吸收带(方差的多变量分析,p <0.01; Dunnett T3事后检验,p <0.05)。因此,似乎所有条件都使FTIR光谱学和成像成为实现分子组织学领域创新方法的主要工具,这将对多种病理学的诊断非常有帮助。

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