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Second harmonic generation imaging in tissue engineering and cartilage pathologies

机译:三次谐波生成成像在组织工程和软骨病理中

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The second harmonic generation from collagen is highly sensitive to what extent collagen molecules are ordered into fibrils as the SHG signal is approximately proportional to the square of the fibril thickness. This can be problematic when interpreting SHG images as thick fibers are much brighter than thinner fibers such that quantification of the amount of collagen present is difficult. On the other hand SHG is therefore also a very sensitive probe to determine whether collagen have assembled into fibrils or are still dissolved as individual collagen molecules. This information is not available from standard histology or immunohistochemical techniques. The degree for fibrillation is an essential component for proper tissue function. We will present the usefulness of SHG imaging in tissue engineering of cartilage as well as cartilage related pathologies. When engineering cartilage it is essential to have the appropriate culturing conditions which cause the collagen molecules to assemble into fibrils. By employing SHG imaging we have studied how cell seeding densities affect the fibrillation of collagen molecules. Furthermore we have used SHG to study pathologies in developing cartilage in a porcine model. In both cases SHG reveals information which is not visible in conventional histology or immunohistochemistry.
机译:由于SHG信号与原纤维厚度的平方近似成比例,来自胶原蛋白的第二次谐波产生高度敏感的胶原蛋白分子在原纤维中的程度上。当将SHG图像解释为比较薄的纤维更亮的纤维来说,这可能是有问题的,使得存在胶原蛋白量的量化是困难的。另一方面,SHG也是一个非常敏感的探针,以确定是否已将胶原蛋白组装成原纤维或仍然作为个体胶原分子溶解。该信息无法从标准组织学或免疫组化技术中获得。原纤化的程度是适当组织功能的必要组分。我们将在软骨组织工程中提出SHG成像的有用性以及软骨相关病理。当工程软骨时,必须具有适当的培养条件,使胶原蛋白分子组装成原纤维。通过使用SHG成像,我们研究了蜂窝种子密度如何影响胶原蛋白分子的颤动。此外,我们使用SHG在猪模型中开发软骨中的病理学。在两种情况下,SHG揭示了在常规组织学或免疫组织中不可见的信息。

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