Department of Histology and Embryology, School of Basic Medical Sciences, Xuzhou Medical University, Xuzhou 221004, China.
The Second Clinical Medical College, Xuzhou Medical University, Xuzhou 221004, China.
Sensors (Basel). 2024 Jun 30;24(13):4264. doi: 10.3390/s24134264.
The properties of nanopipettes largely rely on the materials introduced onto their inner walls, which allow for a vast extension of their sensing capabilities. The challenge of simultaneously enhancing the sensitivity and selectivity of nanopipettes for pH sensing remains, hindering their practical applications. Herein, we report insulin-modified nanopipettes with excellent pH response performances, which were prepared by introducing insulin onto their inner walls via a two-step reaction involving silanization and amidation. The pH response intensity based on ion current rectification was significantly enhanced by approximately 4.29 times when utilizing insulin-modified nanopipettes compared with bare ones, demonstrating a linear response within the pH range of 2.50 to 7.80. In addition, insulin-modified nanopipettes featured good reversibility and selectivity. The modification processes were monitored using the I-V curves, and the relevant mechanisms were discussed. The effects of solution pH and insulin concentration on the modification results were investigated to achieve optimal insulin introduction. This study showed that the pH response behavior of nanopipettes can be greatly improved by introducing versatile molecules onto the inner walls, thereby contributing to the development and utilization of pH-responsive nanopipettes.
纳米移液器的性能在很大程度上取决于引入其内壁的材料,这使得它们的传感能力得到了极大的扩展。目前,同时提高纳米移液器对 pH 值感应的灵敏度和选择性仍然存在挑战,这阻碍了它们的实际应用。在此,我们报告了一种胰岛素修饰的纳米移液器,其具有出色的 pH 响应性能,该纳米移液器是通过两步反应(硅烷化和酰胺化)将胰岛素引入其内壁而制备的。与裸纳米移液器相比,利用胰岛素修饰的纳米移液器时,基于离子电流整流的 pH 响应强度显著增强了约 4.29 倍,在 2.50 至 7.80 pH 范围内呈现线性响应。此外,胰岛素修饰的纳米移液器还具有良好的可逆性和选择性。修饰过程通过 I-V 曲线进行监测,并讨论了相关机制。研究了溶液 pH 值和胰岛素浓度对修饰结果的影响,以实现最佳的胰岛素引入。本研究表明,通过在纳米移液器内壁上引入多功能分子,可以大大改善其 pH 响应行为,从而有助于 pH 响应纳米移液器的开发和利用。