Steininger Fabian, Palmfeldt Johan, Koren Klaus, Kalinichev Andrey V
Aarhus University Centre for Water Technology, Department of Biology, Section for Microbiology, Aarhus University, Ny Munkegade 114-1540, Aarhus C, 8000, Denmark.
Department of Clinical Medicine, Research Unit for Molecular Medicine, Aarhus University Hospital, Palle Juul-Jensens Boulevard 11-A, Aarhus N, 8200, Denmark.
ACS Sens. 2024 Sep 27;9(9):4555-4559. doi: 10.1021/acssensors.4c01481. Epub 2024 Aug 22.
While the pH cross-sensitivity of chromoionophore-based ion-selective optodes (ISOs) has often been regarded as a significant limitation, this paper demonstrates how this apparent drawback can be transformed into a beneficial feature. The response range of chromoionophore-based ISOs shifts proportionally with changes in the sample pH. Thus, integrating them with a stable pH gradient across the optode surface, such as those provided by immobilized pH gradient (IPG) gels, allows for significant enhancement of the effective measuring range of chromoionophore-based ISOs while preserving their maximum sensitivity. We show that the measuring range of sodium-selective chromoionophore-based optodes can be increased up to 2.5 log units when used with commercially available IPG gels. This improvement in measuring range is directly correlated with the pH difference in the pH gradient across the optode, suggesting that even greater enhancements are possible with more substantial pH gradients. Furthermore, this approach is not confined to sodium-selective optodes but can be readily adapted to other ion-selective chromoionophore-based optodes, broadening their potential applications and impact in the field of chemical sensing. This work paves the way for the development of more versatile and highly sensitive optodes across a broad range of analytes, leveraging the pH cross-sensitivity as a tool for enhanced performance.
虽然基于发色团离子载体的离子选择性光极(ISOs)的pH交叉敏感性常常被视为一个重大限制,但本文展示了如何将这一明显的缺点转化为一个有益的特性。基于发色团离子载体的ISOs的响应范围会随着样品pH值的变化而成比例地移动。因此,将它们与光极表面稳定的pH梯度相结合,例如由固定化pH梯度(IPG)凝胶提供的pH梯度,能够在保持其最大灵敏度的同时,显著扩大基于发色团离子载体的ISOs的有效测量范围。我们表明,当与市售的IPG凝胶一起使用时,基于钠选择性发色团离子载体的光极的测量范围可以增加到2.5个对数单位。测量范围的这种改善与光极上pH梯度中的pH差异直接相关,这表明更大的pH梯度可能会带来更大的增强效果。此外,这种方法不仅限于钠选择性光极,还可以很容易地应用于其他基于离子选择性发色团的光极,拓宽它们在化学传感领域的潜在应用和影响。这项工作为开发更通用、更高灵敏度的光极铺平了道路,这些光极可用于广泛的分析物,利用pH交叉敏感性作为提高性能的工具。