Moru Satyanarayana, Sunil Kumar Venishetty, Kummari Shekar, Yugender Goud Kotagiri
Department of Chemistry, School of Advanced Sciences, VIT-AP University, Amaravati 522237, India.
Department of Physical Sciences, Kakatiya Institute of Technology & Science, Warangal 506015, India.
Micromachines (Basel). 2023 Jan 5;14(1):146. doi: 10.3390/mi14010146.
Serotonin (5-hydroxytryptamine (5-HT)) is one of the important neurotransmitters which is released from the endocrine system. An abnormal level of this biomarker leads to several neurological diseases. The accurate assessment of serotonin is the utmost option to start treatment in the early stages of the disease. The current work is focused on the development of a disposable, screen-printed electrochemical sensor for the depression biomarker, serotonin in the physiological pH medium (pH 7.4) with the aid of a hexagonal, Ni(OH)-nanoplate (NH-HNP)-embedded chitosan (Chit) and modified, screen-printed carbon electrode (SPCE). Initially, hexagonal nanoplates of Ni(OH) were synthesized by an eco-friendly and simple hydrothermal method. The prepared materials were well characterized by advanced analytical techniques to examine the physicochemical properties of the synthesized Ni(OH) hexagonal nanoplates. From the cyclic voltametric (CV) analysis, it was found that the oxidative current response of 5-HT at a NH-HNP-modified SPCE has about fivefold higher current values than over bare SPCE. The scan rate studies of NH-HNP-Chit/SPCE electrodes revealed that the oxidation mechanism of 5-HT is controlled by the diffusion behavior of the analyte. Differential pulse voltammetric tests of the NH-HNP-Chit/SPCE electrode exhibited a linear response in the dynamic concentration range of 0.1 to 30 µM, with a detection limit of about 60 nM. The sensor response is very reproducible from electrode to electrode, and the deactivation or surface-fouling of the sensor was not observed within the several experimental measurements. The sensor exhibited excellent storage stability over a period of twenty days. Finally, the fabricated, disposable SPCE sensor has shown respectable activity for the detection of depression biomarker 5-HT from synthetic urine and saliva samples.
血清素(5-羟色胺(5-HT))是从内分泌系统释放的重要神经递质之一。这种生物标志物水平异常会导致多种神经系统疾病。准确评估血清素是在疾病早期开始治疗的首要选择。当前工作聚焦于借助嵌入六方Ni(OH)纳米片(NH-HNP)的壳聚糖(Chit)修饰的丝网印刷碳电极(SPCE),开发一种用于检测抑郁生物标志物血清素的一次性丝网印刷电化学传感器,该传感器用于生理pH介质(pH 7.4)。最初,通过一种环保且简单的水热法合成了六方Ni(OH)纳米片。利用先进的分析技术对制备的材料进行了充分表征,以研究合成的Ni(OH)六方纳米片的物理化学性质。通过循环伏安(CV)分析发现,在NH-HNP修饰的SPCE上5-HT的氧化电流响应比裸SPCE上的电流值高约五倍。对NH-HNP-Chit/SPCE电极的扫描速率研究表明,5-HT的氧化机制受分析物扩散行为控制。NH-HNP-Chit/SPCE电极的差分脉冲伏安测试在0.1至30 μM的动态浓度范围内呈现线性响应,检测限约为60 nM。传感器响应在不同电极之间具有很好的重现性,并且在多次实验测量中未观察到传感器失活或表面污染。该传感器在二十天内表现出优异的储存稳定性。最后,所制备的一次性SPCE传感器在检测合成尿液和唾液样本中的抑郁生物标志物5-HT方面表现出可观的活性。