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地塞米松增强微透析与穿透性损伤

Dexamethasone-Enhanced Microdialysis and Penetration Injury.

作者信息

Jaquins-Gerstl Andrea, Michael Adrian C

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, PA, United States.

出版信息

Front Bioeng Biotechnol. 2020 Dec 8;8:602266. doi: 10.3389/fbioe.2020.602266. eCollection 2020.

Abstract

Microdialysis probes, electrochemical microsensors, and neural prosthetics are often used for monitoring, but these are invasive devices that are implanted directly into brain tissue. Although the selectivity, sensitivity, and temporal resolution of these devices have been characterized in detail, less attention has been paid to the impact of the trauma they inflict on the tissue or the effect of any such trauma on the outcome of the measurements they are used to perform. Factors affecting brain tissue reaction to the implanted devices include: the mechanical trauma during insertion, the foreign body response, implantation method, and physical properties of the device (size, shape, and surface characteristics. Modulation of the immune response is an important step toward making these devices with reliable long-term performance. Local release of anti-inflammatory agents such as dexamethasone (DEX) are often used to mitigate the foreign body response. In this article microdialysis is used to locally deliver DEX to the surrounding brain tissue. This work discusses the immune response resulting from microdialysis probe implantation. We briefly review the principles of microdialysis and the applications of DEX with microdialysis in (i) neuronal devices, (ii) dopamine and fast scan cyclic voltammetry, (iii) the attenuation of microglial cells, (iv) macrophage polarization states, and (v) spreading depolarizations. The difficulties and complexities in these applications are herein discussed.

摘要

微透析探针、电化学微传感器和神经假体常用于监测,但这些都是直接植入脑组织的侵入性设备。尽管这些设备的选择性、灵敏度和时间分辨率已得到详细表征,但它们对组织造成的创伤影响或任何此类创伤对其用于执行的测量结果的影响却较少受到关注。影响脑组织对植入设备反应的因素包括:插入过程中的机械创伤、异物反应、植入方法以及设备的物理特性(尺寸、形状和表面特征)。调节免疫反应是使这些设备具有可靠长期性能的重要一步。局部释放抗炎剂(如地塞米松)常用于减轻异物反应。在本文中,微透析用于将地塞米松局部递送至周围脑组织。这项工作讨论了微透析探针植入引起的免疫反应。我们简要回顾了微透析的原理以及地塞米松在微透析中的应用,包括(i)神经元设备,(ii)多巴胺和快速扫描循环伏安法,(iii)小胶质细胞的衰减,(iv)巨噬细胞极化状态,以及(v)扩散性去极化。本文讨论了这些应用中的困难和复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6711/7752925/17d7de6ba630/fbioe-08-602266-g001.jpg

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