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Health monitoring of biomaterials from molecular fingerprints

机译:从分子指纹图监测生物材料的健康

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摘要

Structural changes in proteins may result in interactions between proteins themselves or between proteins and other biomolecules, which in turn may introduce deterioration of the health state of the system, might it be biological or biominetic. The initial structural changes in proteins can not be observed by established methods of material analysis like X-ray diffraction or NMR spectroscopy, because proteins in biological cells have an extremely low abundance and are in the non-crystalline state. An obvious gap exists between sequencing techniques for amino acids and the molecular understanding of the functional properties of a particular protein. Vibrational spectroscopic methods offer the potential of fast and accurate characterization of essential supramolecular properties in the native state of the biomaterial. Imaging techniques recently became available for both FTIR and Raman spectroscopy. Here we report on the utilization of the enormous information content of FTIR and Raman spectra for health monitoring in engineering and medicine.
机译:蛋白质的结构变化可能导致蛋白质本身之间或蛋白质与其他生物分子之间的相互作用,进而可能导致系统的健康状态恶化,可能是生物的或生物的。蛋白质的初始结构变化无法通过已建立的材料分析方法(例如X射线衍射或NMR光谱法)观察到,因为生物细胞中的蛋白质丰度极低且处于非结晶状态。氨基酸测序技术与分子对特定蛋白质功能特性的理解之间存在明显的差距。振动光谱法提供了在生物材料的天然状态下快速,准确表征基本超分子性质的潜力。最近,成像技术可用于FTIR和拉曼光谱。在这里,我们报告了FTIR和拉曼光谱的大量信息内容在工程和医学健康监测中的利用情况。

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