International Centre of Biodynamics , 1B Intrarea Portocalelor , 060101 Bucharest , Romania.
Anal Chem. 2018 Jun 5;90(11):6899-6905. doi: 10.1021/acs.analchem.8b01124. Epub 2018 May 15.
There are only a few tools suitable for measuring the extracellular pH of adherently growing mammalian cells with high spatial resolution, and none of them is widely used in laboratories around the world. Cell biologists very often limit themselves to measuring the intracellular pH with commercially available fluorescent probes. Therefore, we built a voltammetric pH microsensor and investigated its suitability for monitoring the extracellular pH of adherently growing mammalian cells. The voltammetric pH microsensor consisted of a 37 μm diameter carbon fiber microelectrode modified with reduced graphene oxide and syringaldazine. While graphene oxide was used to increase the electrochemically active surface area of our sensor, syringaldazine facilitated pH sensing through its pH-dependent electrochemical oxidation and reduction. The good sensitivity (60 ± 2.5 mV/pH unit), reproducibility (coefficient of variation ≤3% for the same pH measured with 5 different microsensors), and stability (pH drift around 0.05 units in 3 h) of the built voltammetric pH sensors were successfully used to investigate the acidification of the extracellular space of both cancer cells and normal cells. The results indicate that the developed pH microsensor and the perfected experimental protocol based on scanning electrochemical microscopy can reveal details of the pH regulation of cells not attainable with pH sensors lacking spatial resolution or which cannot be reproducibly positioned in the extracellular space.
目前仅有少数几种工具适用于以高空间分辨率测量贴壁生长的哺乳动物细胞的细胞外 pH 值,而且这些工具都没有在全世界的实验室中广泛使用。细胞生物学家经常局限于使用市售的荧光探针来测量细胞内 pH 值。因此,我们构建了一种伏安法 pH 值微传感器,并研究了其用于监测贴壁生长的哺乳动物细胞细胞外 pH 值的适用性。伏安法 pH 值微传感器由 37μm 直径的碳纤维微电极组成,该微电极经过还原氧化石墨烯和邻苯二胺修饰。虽然氧化石墨烯被用于增加我们传感器的电化学活性表面积,但邻苯二胺通过其 pH 值依赖性电化学氧化和还原来促进 pH 值传感。构建的伏安法 pH 值传感器具有良好的灵敏度(60 ± 2.5 mV/pH 单位)、重现性(用 5 个不同的微传感器测量相同 pH 值时的变异系数≤3%)和稳定性(在 3 小时内 pH 值漂移约 0.05 个单位),成功地用于研究癌细胞和正常细胞细胞外空间的酸化。结果表明,开发的 pH 值微传感器和基于扫描电化学显微镜的完善实验方案可以揭示缺乏空间分辨率或无法在细胞外空间中可重复定位的 pH 值传感器无法获得的细胞 pH 值调节的细节。