Pham Ba Viet Anh, Pham Van Bach Ngoc, Nguyen Luong Thien, Nguyen Khoa Viet
Graduate University of Science and Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Department of Environmental Toxicology and Monitoring, Hanoi University of Natural Resources and Environment, Hanoi, Vietnam.
J Anal Methods Chem. 2022 Mar 2;2022:9019262. doi: 10.1155/2022/9019262. eCollection 2022.
We report a flexible and noninvasive method based on field-effect transistors hybridizing semiconducting single-walled carbon nanotubes for monitoring the effects of histamine on Ca release from the intracellular stores of a nonexcitable cell. These nanodevices allowed us to evaluate the real-time electrophysiological activities of HeLa cells under the stimulation of histamine via the recording of the conductance changes of the devices. These changes resulted from the binding of histamine to its receptor type 1 on the HeLa cell membrane. Moreover, the effects of chlorphenamine, an antihistamine, on the electrophysiological activities of a single HeLa cell were also evaluated, indicating that the pretreatment of the cell with chlorpheniramine decreased intracellular Ca release. Significantly, we only utilized a single nanodevice to perform the measurements for multiple cells pretreated with various concentrations of chlorphenamine. This enabled the statistically meaningful analysis of drug effects on cells without errors from device variations. Obtained results indicated the novel advantages of our method such as real-time monitoring and quantitative capability. Our devices, therefore, can be efficient tools for biomedical applications such as electrophysiology research and drug screening.
我们报道了一种基于场效应晶体管与半导体单壁碳纳米管相结合的灵活且非侵入性的方法,用于监测组胺对非兴奋性细胞内储存钙释放的影响。这些纳米器件使我们能够通过记录器件的电导变化,评估组胺刺激下HeLa细胞的实时电生理活动。这些变化是由于组胺与其在HeLa细胞膜上的1型受体结合所致。此外,还评估了抗组胺药氯苯那敏对单个HeLa细胞电生理活动的影响,结果表明用氯苯那敏预处理细胞可减少细胞内钙释放。值得注意的是,我们仅使用单个纳米器件对用不同浓度氯苯那敏预处理的多个细胞进行测量。这使得能够对药物对细胞的作用进行具有统计学意义的分析,而不会因器件差异产生误差。获得的结果表明了我们方法的新颖优势,如实时监测和定量能力。因此,我们的器件可成为电生理学研究和药物筛选等生物医学应用的有效工具。