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Chiroptical Effects in the Second Harmonic Generation from Collagens I and IV: Applications in Nonlinear Microscopy

机译:胶原蛋白I和IV产生的第二谐波产生的整形效应:在非线性显微镜中的应用

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An emerging application of multiphoton microscopy is the observation of unstained intact biological tissues based on intrinsic sources of nonlinear signals. However, reliable biomedical imaging requires a thorough analysis of these endogenous signals. Looking at skin biopsies, we focused on 2-Photon Excited Fluorescence (2PEF) arising from cytokeratins in the epidermis, and second harmonic generation (SHG) from collagen fibers in the dermis. We determined the 2PEF excitation spectrum and action cross section of purified keratins from human epidermis, and obtained a good agreement with in situ measurements. In order to analyze the role of chirality and collagen type in SHG signal, we performed polarization-resolved surface SHG experiments on thin films of collagens I and IV molecules. We observed that collagen I and IV molecules exhibit comparable SHG signals, except for the chiral contributions which are absent for collagen IV and represent typically 50% of the signal for collagen I, We concluded that the large collagen I SHG efficiency is dominated by coherent effects due to the high density and quasi-crystalline order in collagen fibrils, whereas the lack of any alignment within the collagen IV molecules explains the absence of signal from this collagen type in SHG microscopy.
机译:多光子显微镜的新兴应用是基于非线性信号的内在来源观察未染色的完整生物组织。但是,可靠的生物医学成像需要对这些内源性信号进行全面分析。通过皮肤活检,我们重点研究了表皮细胞角蛋白产生的2光子激发荧光(2PEF),以及真皮胶原纤维产生的二次谐波(SHG)。我们确定了从人表皮中纯化的角蛋白的2PEF激发光谱和作用截面,并与原位测量获得了良好的一致性。为了分析手性和胶原类型在SHG信号中的作用,我们对I型和IV型胶原分子的薄膜进行了偏振分辨表面SHG实验。我们观察到,胶原蛋白I和IV分子显示出可比的SHG信号,除了手性贡献(胶原IV不存在且通常占胶原I信号的50%),我们得出结论,胶原I的大SHG效率由相干效应决定由于胶原蛋白原纤维的高密度和准结晶顺序,而胶原蛋白IV分子内没有任何对齐方式说明了SHG显微镜中没有这种胶原蛋白类型的信号。

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