Graduate School of Environmental Studies, Tohoku University, 6-6-11, Aramaki, Aoba, Sendai 980-8579, Japan.
Talanta. 2012 May 30;94:30-5. doi: 10.1016/j.talanta.2012.01.059. Epub 2012 Mar 3.
A Pt layer/Pt disk electrode configuration was used as a scanning electrochemical microscopy (SECM) probe. The glass seal part of the insulator was covered with a Pt layer to form an exposed pseudo reference electrode. In a HEPES-based medium at pH 7.5, the half-wave potential (E(1/2)) for Fe(CN)(6) oxidation and O(2) reduction measured versus the internal Pt pseudo reference was shifted by about -0.2V, compared with the E(1/2) measured versus the external Ag/AgCl reference electrode. The shape and the current of the cyclic voltammograms (CVs) did not change notably over time, indicating that the Pt layer is sufficiently stable to be used as an integrated pseudo reference for voltammetric measurements. To demonstrate the suitability for SECM applications, the Pt/Pt probe configuration was used for measuring the oxygen consumption and the alkaline phosphatase (ALP) activity of a single mouse embryoid body (mEB). Ten individual mEB samples were characterized to monitor the oxygen concentration profile. Oxygen reduction currents were monitored at -0.7 V versus the Pt pseudo reference and compared with those monitored at -0.5 V versus Ag/AgCl. The respiration rate of mEBs becomes greater with increasing cultivation dates. We have plotted the oxygen consumption rate (F(O(2))) of each mEB sample, measured versus the Pt layer and versus Ag/AgCl. The linearity of the plot was excellent (coefficient of determination R(2)=0.90). The slope of the least squares method was 1. In a 1.0mM p-aminophenylphospate (PAPP) HEPES buffer (pH 9.5) solution, APL activity of mEBs can be characterized, to monitor the p-aminophenol (PAP) oxidation current. ALP catalyzes the hydrolysis of PAPP to PAP. The E(1/2) for PAP oxidation measured versus the Pt layer was not shifted, compared with the E(1/2) versus Ag/AgCl. The mEB samples were characterized to monitor the PAP concentration profile. PAP oxidation currents were monitored at +0.3 V versus the Pt layer and compared with those monitored at +0.3 V versus Ag/AgCl. We have plotted the PAP production rate (F(PAP)) of each mEB sample, measured versus the Pt layer and versus Ag/AgCl. In this case, the linearity of the plot became slightly scattered, but it was found to be possible to evaluate ALP activities of mEB samples utilizing the Pt/Pt probe configuration. This type of probe is very useful because it is not necessary to insert a reference electrode into the measuring solution to obtain an electrical connection, and thus electrochemical measurement in a small volume becomes much easier.
采用 Pt 层/Pt 盘电极构型作为扫描电化学显微镜 (SECM) 探头。绝缘体的玻璃密封部分覆盖有 Pt 层,形成暴露的伪参比电极。在 pH 7.5 的 HEPES 介质中,与内部 Pt 伪参比测量相比,Fe(CN)(6)氧化和 O(2)还原的半波电位 (E(1/2)) 向负方向移动约 0.2V,与外部 Ag/AgCl 参比电极相比。循环伏安法 (CV) 的形状和电流随时间没有明显变化,表明 Pt 层足够稳定,可以用作伏安测量的集成伪参比。为了证明其适用于 SECM 应用,使用 Pt/Pt 探头构型测量单个小鼠胚胎体 (mEB) 的耗氧量和碱性磷酸酶 (ALP) 活性。对 10 个单独的 mEB 样本进行了表征,以监测氧浓度分布。在 -0.7 V 相对于 Pt 伪参比监测氧还原电流,并与在 -0.5 V 相对于 Ag/AgCl 监测的电流进行比较。mEB 的呼吸速率随培养日期的增加而增加。我们绘制了每个 mEB 样本的耗氧量 (F(O(2))),相对于 Pt 层和 Ag/AgCl 进行测量。图的线性非常好 (决定系数 R(2)=0.90)。最小二乘法的斜率为 1。在 1.0mM p-氨基苯膦酸盐 (PAPP) HEPES 缓冲液 (pH 9.5) 溶液中,可表征 mEB 的 ALP 活性,以监测对氨基苯酚 (PAP) 氧化电流。ALP 催化 PAPP 水解为 PAP。与 Ag/AgCl 相比,相对于 Pt 层测量的 PAP 氧化的 E(1/2)没有移动。对 mEB 样本进行了表征,以监测 PAP 浓度分布。在 +0.3 V 相对于 Pt 层监测 PAP 氧化电流,并与在 +0.3 V 相对于 Ag/AgCl 监测的电流进行比较。我们绘制了每个 mEB 样本的 PAP 生成速率 (F(PAP)),相对于 Pt 层和 Ag/AgCl 进行测量。在这种情况下,图的线性变得有点分散,但发现可以利用 Pt/Pt 探头构型评估 mEB 样本的 ALP 活性。这种类型的探头非常有用,因为不需要将参比电极插入测量溶液中以获得电连接,因此在小体积中进行电化学测量变得容易得多。