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白藜芦醇经心室递送至微电极组织界面的可行性研究。

Investigation of the Feasibility of Ventricular Delivery of Resveratrol to the Microelectrode Tissue Interface.

作者信息

Kim Youjoung, Ereifej Evon S, Schwartzman William E, Meade Seth M, Chen Keying, Rayyan Jacob, Feng He, Aluri Varoon, Mueller Natalie N, Bhambra Raman, Bhambra Sahaj, Taylor Dawn M, Capadona Jeffrey R

机构信息

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

Advanced Platform Technology Center, Louis Stokes Cleveland Veterans Affairs Medical Center, Cleveland, OH 44106, USA.

出版信息

Micromachines (Basel). 2021 Nov 25;12(12):1446. doi: 10.3390/mi12121446.

Abstract

(1) Background: Intracortical microelectrodes (IMEs) are essential to basic brain research and clinical brain-machine interfacing applications. However, the foreign body response to IMEs results in chronic inflammation and an increase in levels of reactive oxygen and nitrogen species (ROS/RNS). The current study builds on our previous work, by testing a new delivery method of a promising antioxidant as a means of extending intracortical microelectrodes performance. While resveratrol has shown efficacy in improving tissue response, chronic delivery has proven difficult because of its low solubility in water and low bioavailability due to extensive first pass metabolism. (2) Methods: Investigation of an intraventricular delivery of resveratrol in rats was performed herein to circumvent bioavailability hurdles of resveratrol delivery to the brain. (3) Results: Intraventricular delivery of resveratrol in rats delivered resveratrol to the electrode interface. However, intraventricular delivery did not have a significant impact on electrophysiological recordings over the six-week study. Histological findings indicated that rats receiving intraventricular delivery of resveratrol had a decrease of oxidative stress, yet other biomarkers of inflammation were found to be not significantly different from control groups. However, investigation of the bioavailability of resveratrol indicated a decrease in resveratrol accumulation in the brain with time coupled with inconsistent drug elution from the cannulas. Further inspection showed that there may be tissue or cellular debris clogging the cannulas, resulting in variable elution, which may have impacted the results of the study. (4) Conclusions: These results indicate that the intraventricular delivery approach described herein needs further optimization, or may not be well suited for this application.

摘要

(1)背景:皮层内微电极(IMEs)对于基础脑研究和临床脑机接口应用至关重要。然而,机体对IMEs的异物反应会导致慢性炎症以及活性氧和氮物种(ROS/RNS)水平升高。本研究基于我们之前的工作,测试一种有前景的抗氧化剂的新递送方法,以此作为延长皮层内微电极性能的手段。虽然白藜芦醇已显示出改善组织反应的功效,但由于其在水中的低溶解度以及首过代谢广泛导致的低生物利用度,长期递送已被证明具有困难。(2)方法:本文对大鼠进行了白藜芦醇脑室内递送的研究,以规避白藜芦醇递送至脑部时的生物利用度障碍。(3)结果:大鼠脑室内递送白藜芦醇可将其递送至电极界面。然而,在为期六周的研究中,脑室内递送对电生理记录没有显著影响。组织学结果表明,接受脑室内递送白藜芦醇的大鼠氧化应激有所降低,但发现其他炎症生物标志物与对照组无显著差异。然而,对白藜芦醇生物利用度的研究表明,随着时间推移,白藜芦醇在脑中的蓄积减少,且从套管中的药物洗脱不一致。进一步检查显示,可能存在组织或细胞碎片堵塞套管,导致洗脱变化,这可能影响了研究结果。(4)结论:这些结果表明,本文所述的脑室内递送方法需要进一步优化,或者可能不太适合该应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0203/8708660/f121c8f5b2fb/micromachines-12-01446-g001.jpg

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