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Measurement of the Quadratic Hyperpolarizability of the Collagen Triple Helix and Application to Second Harmonic Imaging of Natural and Biomimetic Collagenous Tissues

机译:测量胶原蛋白三重螺旋的二次超刺激性及其应用于自然和仿生胶原组织的二次谐波成像

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Collagen is a major protein of the extracellular matrix that is characterized by triple helical domains. It plays a central role in the formation of fibrillar and microfibrillar networks, basement membranes, as well as other structures of the connective tissue. Remarkably, fibrillar collagen exhibits efficient Second Harmonic Generation (SHG) so that SHG microscopy proved to be a sensitive tool to probe the three-dimensional architecture of fibrillar collagen and to assess the progression of fibrotic pathologies. We obtained sensitive and reproducible measurements of the fibrosis extent, but we needed quantitative data at the molecular level to further process SHG images. We therefore performed Hyper-Rayleigh Scattering (HRS) experiments and measured a second order hyperpolarisability of 1.25 10~(-27) esu for rat-tail type I collagen. This value is surprisingly large considering that collagen presents no strong harmonophore in its amino-acid sequence. In order to get insight into the physical origin of this nonlinear process, we performed HRS measurements after denaturation of the collagen triple helix and for a collagen-like short model peptide [(Pro-ProGly)_(10)]_3. It showed that the collagen large nonlinear response originates in the tight alignment of a large number of weakly efficient harmonophores, presumably the peptide bonds, resulting in a coherent amplification of the nonlinear signal along the triple helix. To illustrate this mechanism, we successfully recorded SHG images in collagenous biomimetic matrices.
机译:胶原蛋白是细胞外基质的主要蛋白质,其特征在于三重螺旋结构域。它在形成纤维状和微纤维网络,基底膜以及结缔组织的其他结构中起着核心作用。值得注意的是,Fibrillar胶原蛋白表现出高效的第二次谐波产生(SHG),使得SHG显微镜被证明是探讨纤维状胶原的三维结构的敏感工具,并评估纤维化病理的进展。我们获得了纤维化程度的敏感和可重复的测量,但我们需要在分子水平处的定量数据进一步处理SHG图像。因此,我们进行了超瑞利散射(HRS)实验,并测量了大鼠尾型I胶原蛋白的1.25 10〜(-27)eSU的二阶超苯甲酸。考虑到胶原蛋白在其氨基酸序列中没有强烈的和次级团,这种值令人惊讶地大。为了能够深入了解该非线性过程的物理来源,我们在变性胶原三螺旋和胶原蛋白的短型肽的变性后进行HRS测量[(Pro-Progly)_(10)] _ 3。结果表明,胶原大的非线性反应源于大量弱效率的和谐的对准,大概是肽键,导致三重螺旋的非线性信号的相干扩增。为了说明这种机制,我们在胶原仿生矩阵中成功地记录了SHG图像。

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