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GFAP inflammatory response to dextran-coated silicon electrodes

机译:GFAP对葡聚糖涂层硅电极的炎症反应

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摘要

Recent advances in three-dimensional, confocal imaging techniques and image analysis software allow for previously unattainable measurements in the neural environment. Specifically, relative quantitative measurements of the amount of glial fibrillary acidic protein (GFAP) surrounding a neural implant can be determined. In this study, dextran coatings have been applied to silicon neural implants. Dextran coatings have been shown to limit non-specific cell adhesion in vitro. Thus, it is believed that these coatings will limit the amount of gliosis surrounding a neural implant and ultimately improve signal-to-noise ratio. To test this hypothesis, Sprague-Dawley rats were implanted with both dextran-coated and non-dextran-coated silicon electrodes. Using immunohistochemical staining in conjunction with confocal imaging and image analysis techniques, the differences in GFAP upregulation between dextran-coated and non-treated silicon neural implants were investigated.
机译:三维共聚焦成像技术和图像分析软件的最新进展允许在神经环境中进行以前无法实现的测量。具体而言,可以确定围绕神经植入物的神经胶质原纤维酸性蛋白(GFAP)数量的相对定量测量结果。在这项研究中,葡聚糖涂层已应用于硅神经植入物。右旋糖酐涂层已显示出在体外限制非特异性细胞粘附的作用。因此,据信这些涂层将限制神经植入物周围的神经胶质的数量,并最终改善信噪比。为了验证这一假设,将Sprague-Dawley大鼠植入了右旋糖酐涂层的硅电极和未右旋糖酐涂层的硅电极。使用免疫组织化学染色结合共聚焦成像和图像分析技术,研究了葡聚糖涂层和未处理的硅神经植入物之间GFAP上调的差异。

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