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Glymphatic clearance of simulated silicon dispersion in mouse brain analyzed by laser induced breakdown spectroscopy

机译:激光诱导击穿光谱法分析小鼠脑中模拟硅分散体的淋巴清除率

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摘要

Silicon-based devices, such as neural probes, are increasingly used as electrodes for receiving electrical signals from neural tissue. Neural probes used chronically have been known to induce inflammation and elicit an immune response. The current study detects and evaluates silicon dispersion from a concentrated source in the mouse brain using laser induced breakdown spectroscopy. Element lines for Si (I) were found at the injection site at approximately 288 nm at 3hr post-implantation, even with tissue perfusion, indicating possible infusion into neural tissue. At 24hr and 1-week post-implantation, no silicon lines were found, indicating clearance. An isolated immune response was found by CD68 macrophage response at 24hr post injection. Future studies should measure chronic silicon exposure to determine if the inflammatory response is proportional to silicon administration. The present type of protocol, coupling laser induced breakdown spectroscopy, neuroimaging, histology, immunohistochemistry, and determination of clearance could be used to investigate the glymphatic system and different tissue states such as in disease (e.g. Alzheimer's).
机译:诸如神经探针之类的基于硅的设备越来越多地用作从神经组织接收电信号的电极。已知长期使用的神经探针会引起炎症并引发免疫反应。当前的研究使用激光诱导击穿光谱技术检测并评估了小鼠大脑中来自集中源的硅分散。在植入后3小时,甚至在进行组织灌注的情况下,在注射部位大约288 nm处也发现了Si(I)的元素线,这表明可能会注入神经组织。植入后24小时和1周,未发现硅线,表明存在间隙。在注射后24小时通过CD68巨噬细胞应答发现了分离的免疫应答。未来的研究应该测量长期的硅暴露量,以确定炎症反应是否与硅摄入量成正比。目前的协议类型,耦合激光诱导击穿光谱,神经影像学,组织学,免疫组织化学和清除率的确定可用于研究淋巴系统和不同组织状态,例如疾病(例如阿尔茨海默氏病)。

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