Liu Favian A, Ardabili Negar, Brown Izaiah, Rafi Harmain, Cook Clarice, Nikopoulou Rodanthi, Lopez Arianna, Zou Shouzhong, Hartings Matthew R, Zestos Alexander G
Department of Chemistry, American University, Washington, DC 20016, USA.
Department of Neuroscience, American University, Washington, DC 20016, USA.
J Electrochem Soc. 2022 Jan;169. doi: 10.1149/1945-7111/ac4aae. Epub 2022 Jan 21.
Carbon fiber microelectrodes (CFMEs) have been used to detect neurotransmitters and other biomolecules using fast-scan cyclic voltammetry (FSCV) for the past few decades. This technique measures neurotransmitters such as dopamine and, more recently, physiologically relevant neuropeptides. Oxytocin, a pleiotropic peptide hormone, is physiologically important for adaptation, development, reproduction, and social behavior. This neuropeptide functions as a stress-coping molecule, an anti-inflammatory agent, and serves as an antioxidant with protective effects especially during adversity or trauma. Here, we measure tyrosine using the Modified Sawhorse Waveform (MSW), enabling enhanced electrode sensitivity for the amino acid and oxytocin peptide. Applying the MSW, decreased surface fouling and enabled codetection with other monoamines. As oxytocin contains tyrosine, the MSW was also used to detect oxytocin. The sensitivity of oxytocin detection was found to be 3.99 ± 0.49 nA/μM, (n=5). Additionally, we demonstrate that applying the MSW on CFMEs allows for real time measurements of exogenously applied oxytocin on rat brain slices. These studies may serve as novel assays for oxytocin detection in a fast, sub-second timescale with possible implications for measurements and further understanding of the physiological role of oxytocin.
在过去几十年里,碳纤维微电极(CFMEs)一直被用于通过快速扫描循环伏安法(FSCV)检测神经递质和其他生物分子。这项技术可测量多巴胺等神经递质,以及最近发现的具有生理相关性的神经肽。催产素是一种具有多种功能的肽类激素,在适应、发育、繁殖和社会行为方面具有重要的生理意义。这种神经肽起着应激应对分子、抗炎剂的作用,尤其在逆境或创伤期间还作为具有保护作用的抗氧化剂。在此,我们使用改良的锯木架波形(MSW)来测量酪氨酸,从而提高了电极对氨基酸和催产素肽的灵敏度。应用MSW可减少表面污染,并能与其他单胺类物质进行共检测。由于催产素含有酪氨酸,MSW也被用于检测催产素。催产素检测的灵敏度为3.99±0.49 nA/μM,(n = 5)。此外,我们证明在CFMEs上应用MSW能够对外源性施加于大鼠脑片上的催产素进行实时测量。这些研究可能成为在快速的亚秒级时间尺度上检测催产素的新型检测方法,对催产素的测量以及进一步理解其生理作用可能具有重要意义。