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从水凝胶储库进行电动力学对流增强传递以递送至脑内。

Electrokinetic convection-enhanced delivery for infusion into the brain from a hydrogel reservoir.

机构信息

Department of Neurosurgery, Houston Methodist Research Institute, Houston, TX, USA.

Center for Neural Systems Restoration, Houston Methodist Research Institute, Houston, TX, USA.

出版信息

Commun Biol. 2024 Jul 17;7(1):869. doi: 10.1038/s42003-024-06404-1.

Abstract

Electrokinetic convection-enhanced delivery (ECED) utilizes an external electric field to drive the delivery of molecules and bioactive substances to local regions of the brain through electroosmosis and electrophoresis, without the need for an applied pressure. We characterize the implementation of ECED to direct a neutrally charged fluorophore (3 kDa) from a doped biocompatible acrylic acid/acrylamide hydrogel placed on the cortical surface. We compare fluorophore infusion profiles using ECED (time = 30 min, current = 50 µA) and diffusion-only control trials, for ex vivo (N = 18) and in vivo (N = 12) experiments. The linear intensity profile of infusion to the brain is significantly higher in ECED compared to control trials, both for in vivo and ex vivo. The linear distance of infusion, area of infusion, and the displacement of peak fluorescence intensity along the direction of infusion in ECED trials compared to control trials are significantly larger for in vivo trials, but not for ex vivo trials. These results demonstrate the effectiveness of ECED to direct a solute from a surface hydrogel towards inside the brain parenchyma based predominantly on the electroosmotic vector.

摘要

电动流增强传递(ECED)利用外部电场通过电渗流和电泳将分子和生物活性物质驱动到大脑的局部区域,而无需施加压力。我们描述了通过将中性带电荷的荧光团(3 kDa)从放置在皮质表面的掺杂生物相容的丙烯酸/丙烯酰胺水凝胶中进行 ECED 的实施情况。我们比较了使用 ECED(时间= 30 分钟,电流= 50 µA)和仅扩散控制试验的荧光团输注曲线,用于离体(N= 18)和体内(N= 12)实验。与对照试验相比,ECED 到大脑中的输注线性强度曲线在体内和离体实验中均明显更高。与对照试验相比,体内试验中 ECED 试验中输注的线性距离、输注面积以及沿输注方向的荧光强度峰值的位移明显更大,但离体试验中则没有。这些结果表明,ECED 能够有效地将溶质从表面水凝胶引导到脑实质内部,主要基于电渗流矢量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ea9/11255224/576e0c721667/42003_2024_6404_Fig1_HTML.jpg

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