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用于监测脑组织氧含量的多部位临床深度记录电极的电化学评估

Electrochemical Evaluation of a Multi-Site Clinical Depth Recording Electrode for Monitoring Cerebral Tissue Oxygen.

作者信息

Ledo Ana, Fernandes Eliana, Quintero Jorge E, Gerhardt Greg A, Barbosa Rui M

机构信息

Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, Portugal.

Center for Neuroscience and Cell Biology, University of Coimbra, 3004-504 Coimbra, Portugal.

出版信息

Micromachines (Basel). 2020 Jun 28;11(7):632. doi: 10.3390/mi11070632.

Abstract

The intracranial measurement of local cerebral tissue oxygen levels-PbtO-has become a useful tool for the critical care unit to investigate severe trauma and ischemia injury in patients. Our preliminary work in animal models supports the hypothesis that multi-site depth electrode recording of PbtO may give surgeons and critical care providers needed information about brain viability and the capacity for better recovery. Here, we present a surface morphology characterization and an electrochemical evaluation of the analytical properties toward oxygen detection of an FDA-approved, commercially available, clinical grade depth recording electrode comprising 12 Pt recording contacts. We found that the surface of the recording sites is composed of a thin film of smooth Pt and that the electrochemical behavior evaluated by cyclic voltammetry in acidic and neutral electrolyte is typical of polycrystalline Pt surface. The smoothness of the Pt surface was further corroborated by determination of the electrochemical active surface, confirming a roughness factor of 0.9. At an optimal working potential of -0.6 V vs. Ag/AgCl, the sensor displayed suitable values of sensitivity and limit of detection for PbtO measurements. Based on the reported catalytical properties of Pt toward the electroreduction reaction of O, we propose that these probes could be repurposed for multisite monitoring of PbtO in the human brain.

摘要

颅内局部脑组织氧水平(PbtO)的测量已成为重症监护病房研究患者严重创伤和缺血性损伤的有用工具。我们在动物模型中的初步工作支持这样的假设,即PbtO的多部位深度电极记录可能会为外科医生和重症监护人员提供有关脑活力以及更好恢复能力的所需信息。在此,我们展示了一种经美国食品药品监督管理局(FDA)批准的、市售的、临床级的包含12个铂记录触点的深度记录电极对氧检测的分析特性的表面形态表征和电化学评估。我们发现记录部位的表面由光滑的铂薄膜组成,并且在酸性和中性电解质中通过循环伏安法评估的电化学行为是多晶铂表面的典型行为。通过测定电化学活性表面进一步证实了铂表面的光滑度,确定粗糙度因子为0.9。在相对于Ag/AgCl为 -0.6 V的最佳工作电位下,该传感器对PbtO测量显示出合适的灵敏度值和检测限。基于所报道的铂对O的电还原反应的催化特性,我们提出这些探头可重新用于人脑PbtO的多部位监测。

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