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用于5-羟色胺张力水平多部位传感的可植入柔性多电极阵列

Implantable flexible multielectrode arrays for multi-site sensing of serotonin tonic levels.

作者信息

Castagnola Elisa, Robbins Elaine M, Krahe Daniela, Wu Bingchen, Pwint May Yoon, Cao Qun, Cui Xinyan Tracy

出版信息

bioRxiv. 2023 Jan 20:2023.01.17.524488. doi: 10.1101/2023.01.17.524488.

Abstract

UNLABELLED

Real-time multi-channel measurements of tonic serotonin (5-hydroxytryptamine, 5-HT) concentrations across different brain regions are of utmost importance to the understanding of 5-HT’s role in anxiety, depression, and impulse control disorders, which will improve the diagnosis and treatment of these neuropsychiatric illnesses. Chronic sampling of 5-HT is critical in tracking disease development as well as the time course of pharmacological treatments. Despite their value, chronic multi-site measurements of 5-HT have not been reported. To fill this technological gap, we batch fabricated implantable glassy carbon (GC) microelectrode arrays (MEAs) on a flexible SU-8 substrate to provide an electrochemically stable and biocompatible device/tissue interface. Then, to achieve multi-site detection of tonic 5-HT concentrations, we incorporated the poly(3,4-ethylenedioxythiophene)/functionalized carbon nanotube (PEDOT/CNT) coating on the GC microelectrodes in combination with a new square wave voltammetry (SWV) approach, optimized for selective 5-HT measurement. , the PEDOT/CNT coated GC microelectrodes achieved high sensitivity towards 5-HT, good fouling resistance in the presence of 5-HT, and excellent selectivity towards the most common neurochemical interferents. , our PEDOT/CNT-coated GC MEAs were able to successfully detect basal 5-HT concentrations at different locations of the CA2 hippocampal region of mice in both anesthetized and awake head-fixed conditions. Furthermore, the implanted PEDOT/CNT-coated MEA achieved stable detection of tonic 5-HT concentrations for one week. Finally, histology data in the hippocampus shows reduced tissue damage and inflammatory responses compared to stiff silicon probes. To the best of our knowledge, this PEDOT/CNT-coated GC MEA is the first implantable flexible multisite sensor capable of chronic multi-site sensing of tonic 5-HT. This implantable MEA can be custom-designed according to specific brain region of interests and research questions, with the potential to combine electrophysiology recording and multiple analyte sensing to maximize our understanding of neurochemistry.

HIGHLIGHTS

PEDOT/CNT-coated GC microelectrodes enabled sensitive and selective tonic detection of serotonin (5-HT) using a new square wave voltammetry (SWV) approach PEDOT/CNT-coated GC MEAs achieved multi-site 5-HT tonic detection for one week. Flexible MEAs lead to reduced tissue damage and inflammation compared to stiff silicon probes.

摘要

未标记

跨不同脑区的血清素(5-羟色胺,5-HT)张力浓度的实时多通道测量对于理解5-HT在焦虑、抑郁和冲动控制障碍中的作用至关重要,这将改善这些神经精神疾病的诊断和治疗。5-HT的长期采样对于追踪疾病发展以及药物治疗的时间进程至关重要。尽管它们具有价值,但尚未有关于5-HT的慢性多部位测量的报道。为了填补这一技术空白,我们在柔性SU-8基板上批量制造了可植入的玻碳(GC)微电极阵列(MEA),以提供电化学稳定且生物相容的设备/组织界面。然后,为了实现对5-HT张力浓度的多部位检测,我们在GC微电极上结合了聚(3,4-乙撑二氧噻吩)/功能化碳纳米管(PEDOT/CNT)涂层,并采用了一种针对选择性5-HT测量进行优化的新型方波伏安法(SWV)。结果,PEDOT/CNT涂层的GC微电极对5-HT具有高灵敏度,在存在5-HT的情况下具有良好的抗污染性,并且对最常见的神经化学干扰物具有出色的选择性。此外,我们的PEDOT/CNT涂层的GC MEA能够在麻醉和清醒头部固定条件下成功检测小鼠CA2海马区不同位置的基础5-HT浓度。此外,植入的PEDOT/CNT涂层的MEA能够稳定检测5-HT张力浓度达一周。最后,海马体的组织学数据显示,与刚性硅探针相比,组织损伤和炎症反应减少。据我们所知,这种PEDOT/CNT涂层的GC MEA是第一个能够对5-HT张力进行慢性多部位传感的可植入柔性多部位传感器。这种可植入的MEA可以根据感兴趣的特定脑区和研究问题进行定制设计,有可能结合电生理记录和多种分析物传感,以最大限度地增进我们对神经化学的理解。

重点

PEDOT/CNT涂层的GC微电极使用新型方波伏安法(SWV)实现了对血清素(5-HT)的灵敏且选择性的张力检测

PEDOT/CNT涂层的GC MEA实现了一周的多部位5-HT张力检测。

与刚性硅探针相比,柔性MEA导致组织损伤和炎症减少。

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