Arral Mariah L, Tooley Christian, Ziino Emily, Halpern Jeffrey Mark
Department of Chemical Engineering, University of New Hampshire, 33 Academic Way, Durham, NH 03824.
J Electrochem Soc. 2020;167(2). doi: 10.1149/1945-7111/ab643a. Epub 2020 Jan 9.
N-Hydroxy-L-arginine (NOHA) is a stable intermediate product in the urea cycle that can be used to monitor the consumption of L-arginine by nitrous oxide synthase (NOS) to produce nitric oxide (NO) and L-citrulline. Research has implicated the urea cycle in many diseases and NO has cultivated interest as a potential biomarker for neural health. Electrochemical detection is an established, cost-effective method that can successfully detect low levels of analyte concentrations. As one of the few electrochemically active species in the urea cycle, NOHA shows promise as a biomarker for monitoring disruptions in this biochemical process. In this study, we show that NOHA has an oxidation peak at +355 mV vs Ag/AgCl at a glassy carbon electrode. In addition, cyclic voltammetry studies with structural analogs - alanine and hydroxyguanidine - allowed us to approximate the oxidation wave at +355 mV vs Ag/AgCl to be a one electron process. Diffusivity of NOHA was found using linear scan voltammetry with a rotating disk electrode and approximated at 5.50×10 cm/s. Ample work is still needed to make a robust biosensor, but the results here characterize the electrochemical activity and represent principle steps in making a NOHA biosensor.
N-羟基-L-精氨酸(NOHA)是尿素循环中的一种稳定中间产物,可用于监测一氧化氮合酶(NOS)消耗L-精氨酸以产生一氧化氮(NO)和L-瓜氨酸的过程。研究表明尿素循环与多种疾病有关,并且NO作为神经健康的潜在生物标志物已引起关注。电化学检测是一种成熟的、具有成本效益的方法,能够成功检测低水平的分析物浓度。作为尿素循环中少数具有电化学活性的物质之一,NOHA有望作为监测这一生化过程紊乱的生物标志物。在本研究中,我们表明在玻碳电极上,相对于Ag/AgCl,NOHA在+355 mV处有一个氧化峰。此外,对结构类似物——丙氨酸和羟基胍——进行循环伏安法研究,使我们能够将相对于Ag/AgCl在+355 mV处的氧化波近似为单电子过程。使用旋转圆盘电极通过线性扫描伏安法测定了NOHA的扩散系数,约为5.50×10 cm/s。要制造出一种强大的生物传感器仍需要大量工作,但此处的结果表征了电化学活性,并代表了制造NOHA生物传感器的主要步骤。