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一种用于同时在大鼠肾脏表面成像氧和 pH 的双电化学微传感器。

A dual electrochemical microsensor for simultaneous imaging of oxygen and pH over the rat kidney surface.

机构信息

Department of Chemistry and Nano Science, Global Top 5 Program, Ewha Womans University, Seoul 120-750, Korea.

出版信息

Analyst. 2013 Sep 21;138(18):5258-64. doi: 10.1039/c3an00878a. Epub 2013 Jul 16.

Abstract

In this study, a dual microsensing electrochemical probe for measuring oxygen (O2) and pH levels was developed based on a dual recessed Pt disk electrode (each disk diameter, 10 μm) with the use of two Ag/AgCl reference electrodes (one for each disk of the dual electrode). One of the recessed Pt disks of the dual electrode was electrodeposited with a porous Pt layer and then coated with a hydrophobic photocured polymer (partially fluorinated epoxy diacrylate, abbreviated as FED). The Pt-FED covered disk was used as an amperometric O2 sensor and exhibited a linear current increase that was proportional to the PO2 level (partial O2 pressure) with high sensitivity (168.4 ± 33.8 pA mmHg(-1)) and fast response time (t90% = 0.17 ± 0.05 s). The other recessed Pt disk was electrodeposited with an IrO2 layer. The potential between the IrO2 deposited electrode and the Ag/AgCl reference electrode produced a reliable Nernstian response to pH changes (58.3 ± 1.5 mV pH(-1)) with a t90% of 0.43 ± 0.09 s. The sensor displayed high stability in the in vitro organ tissue measurements for at least 2.5 h. By using the developed dual O2/pH microsensor as a probe tip for scanning electrochemical microscopy, the two-dimensional images of the location-dependent PO2 and pH levels were simultaneously acquired and could be used to assess the surface of a rat kidney tissue slice. When compared to the corresponding medullary levels, both PO2 and pH were observed to be higher in the cortex area, while the modest level gradient was observed near the cortex-medulla border. This finding suggests that there is a direct relationship between the tissue O2 supply/consumption and pH, which is mainly determined by metabolite, such as CO2, production.

摘要

在这项研究中,基于带有两个 Ag/AgCl 参比电极的双凹 Pt 盘电极(每个盘直径为 10μm),开发了一种用于测量氧(O2)和 pH 值的双微传感电化学探头。双电极的一个凹 Pt 盘用电沉积法沉积了多孔 Pt 层,然后涂覆了疏水性光固化聚合物(部分氟化环氧二丙烯酸酯,简称 FED)。Pt-FED 覆盖的盘用作电流型 O2 传感器,表现出与 PO2 水平(部分 O2 压力)成正比的线性电流增加,具有高灵敏度(168.4±33.8pAmmHg-1)和快速响应时间(t90%=0.17±0.05s)。另一个凹 Pt 盘用电沉积法沉积了 IrO2 层。沉积 IrO2 的电极与 Ag/AgCl 参比电极之间的电势对 pH 值的变化产生了可靠的 Nernst 响应(58.3±1.5mVpH-1),t90%为 0.43±0.09s。该传感器在体外组织测量中至少 2.5 小时内显示出高稳定性。通过将开发的双 O2/pH 微传感器用作扫描电化学显微镜的探头尖端,同时获得了位置相关的 PO2 和 pH 值的二维图像,并可用于评估大鼠肾组织切片的表面。与相应的髓质水平相比,皮质区域的 PO2 和 pH 值均较高,而在皮质-髓质边界附近观察到适度的水平梯度。这一发现表明,组织的 O2 供应/消耗与 pH 值之间存在直接关系,这主要由代谢物(如 CO2)的产生决定。

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