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VibrationalSum-Frequency Scattering for Detailed Studies of Collagen Fibers inAqueous Environments

机译:振动的和频散射技术用于胶原蛋白纤维的详细研究水环境

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摘要

Protein fibers play a crucial role in many disease related phenomena and biological systems. A structural analysis of fibrous proteins often requires labeling approaches or disruptive sample preparation while it lacks chemical specificity. Here we demonstrate that the technique of vibrational sum-frequency scattering (SFS) provides a label-free pathway for the chemical and structural analysis of protein fibers in solution. By examining collagen, the most abundant protein in mammals, we demonstrate that the SFS signal of fibers can be detected in the NH, CH stretching and bending, and amide I regions. SFS spectra were found to depend on the scattering angle, which implies the possibility to selectively probe various features of the fibers. The fitting of the data and maximum entropy method analysis revealed a different phase for side-chains and carbonyl contributions, which helps to identify these otherwise overlapping spectral peaks and provides the possibility to perform orientational analysis. Our findings suggest that SFS allows for the greater understanding of protein fibers in solution, whichis important when, for example, designing scaffolds in tissue engineeringor developing cures for diseases associated with protein fibers.
机译:蛋白纤维在许多与疾病有关的现象和生物系统中起着至关重要的作用。纤维蛋白的结构分析通常需要标记方法或破坏性的样品前处理,而缺乏化学特异性。在这里,我们证明了振动和频散射(SFS)技术为溶液中蛋白质纤维的化学和结构分析提供了一种无标记的途径。通过检查胶原蛋白(哺乳动物中最丰富的蛋白质),我们证明可以在NH,CH拉伸和弯曲以及酰胺I区域检测到纤维的SFS信号。发现SFS光谱取决于散射角,这暗示了选择性探测纤维的各种特征的可能性。数据的拟合和最大熵方法分析揭示了侧链和羰基贡献的不同相,这有助于识别这些原本重叠的光谱峰,并提供了进行定向分析的可能性。我们的发现表明,SFS使人们对溶液中的蛋白质纤维有了更深入的了解,从而例如在组织工程中设计支架时很重要或开发治疗蛋白质纤维相关疾病的方法。

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