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Polarized Raman Anisotropic Response of Collagen in Tendon: Towards 3D Orientation Mapping of Collagen in Tissues

机译:肌腱中胶原蛋白的极化拉曼各向异性响应:向组织中胶原蛋白的3D方向映射

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摘要

In this study, polarized Raman spectroscopy (PRS) was used to characterize the anisotropic response of the amide I band of collagen as a basis for evaluating three-dimensional collagen fibril orientation in tissues. Firstly, the response was investigated theoretically by applying classical Raman theory to collagen-like peptide crystal structures. The theoretical methodology was then tested experimentally, by measuring amide I intensity anisotropy in rat tail as a function of the orientation of the incident laser polarization. For the theoretical study, several collagen-like triple-helical peptide crystal structures obtained from the Protein Data Bank were rotated “in plane” and “out of plane” to evaluate the role of molecular orientation on the intensity of the amide I band. Collagen-like peptides exhibit a sinusoidal anisotropic response when rotated “in plane” with respect to the polarized incident laser. Maximal intensity was obtained when the polarization of the incident light is perpendicular to the molecule and minimal when parallel. In the case of “out of plane” rotation of the molecular structure a decreased anisotropic response was observed, becoming completely isotropic when the structure was perpendicular to the plane of observation. The theoretical Raman response of collagen was compared to that of alpha helical protein fragments. In contrast to collagen, alpha helices have a maximal signal when incident light is parallel to the molecule and minimal when perpendicular. For out-of-plane molecular orientations alpha-helix structures display a decreased average intensity. Results obtained from experiments on rat tail tendon are in excellent agreement with the theoretical predictions, thus demonstrating the high potential of PRS for experimental evaluation of the three-dimensional orientation of collagen fibers in biological tissues.
机译:在这项研究中,极化拉曼光谱(PRS)用于表征胶原酰胺I带的各向异性响应,作为评估组织中三维胶原原纤维取向的基础。首先,通过将经典拉曼理论应用于类胶原蛋白的肽晶体结构,从理论上研究了反应。然后通过测量大鼠尾部酰胺I强度各向异性随入射激光偏振方向的变化,对理论方法进行了实验测试。为了进行理论研究,将从“蛋白质数据库”中获得的几种胶原蛋白状三螺旋肽晶体结构“平面内”和“平面外”旋转,以评估分子取向对酰胺I谱带强度的作用。当相对于偏振入射激光“在平面内”旋转时,胶原蛋白样肽表现出正弦各向异性响应。当入射光的偏振垂直于分子时获得最大强度,而平行时则获得最小强度。在分子结构“平面外”旋转的情况下,观察到各向异性响应降低,当该结构垂直于观察平面时变为完全各向同性。将胶原蛋白的理论拉曼响应与α螺旋蛋白片段的响应进行了比较。与胶原蛋白相反,当入射光与分子平行时,α螺旋信号最大,而与分子平行时,α螺旋信号最小。对于平面外分子取向,α-螺旋结构显示出降低的平均强度。从大鼠尾肌腱实验获得的结果与理论预测非常吻合,从而证明了PRS在生物组织中胶原纤维三维定向实验评估中的巨大潜力。

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