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用于高效安培检测组胺的纳米结构WS@壳聚糖修饰丝网印刷碳电极

Nanostructured WS@Chitosan-Modified Screen-Printed Carbon Electrodes for Efficient Amperometric Detection of Histamine.

作者信息

Singh Diksha, Srivastava Ankur, Chaturvedi Vivek K, Singh Jay

机构信息

Department of Chemistry, Institute of Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh 221005, India.

Department of Gastroenterology, Institute of Medical Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh 211302, India.

出版信息

ACS Omega. 2025 Jan 14;10(3):3153-3164. doi: 10.1021/acsomega.4c10419. eCollection 2025 Jan 28.

Abstract

Histamine, a pivotal chemical within certain cells of the human body, is responsible for eliciting various allergic symptoms, such as sneezing and a runny nose. In cases of allergies, where the immune system misidentifies typically harmless substances, such as certain foods or dust, as harmful, an efficient histamine sensor becomes imperative. This research introduces a novel sensing platform by employing a material comprising hydrothermally synthesized WS nanosheets and using this with a chitosan (CS) biopolymer on a screen-printed carbon electrode (SPE). Integrating WS and CS components on the SPE via drop-casting synergistically enhances conductivity and various sensor properties. This novel hybrid material combines organic CS and inorganic WS components applied for nonenzymatic histamine detection via differential pulse voltammetry. This study also included crystallite size determination and surface morphology assessment through characterization of the synthesized WS nanosheets. On the surface of the SPE, WS and CS were drop-casted. It is recommended that histamine be electrochemically measured on modified WS/CS/SPE electrodes. Histamine measurements were conducted within a linear coverage of 1-100 μM, with a limit of detection of 0.0844 μM and sensitivity of 1.44 × 10 mA/μM cm. The developed sensor exhibited notable levels of sensitivity, selectivity, stability, and repeatability, along with an extended linear range. The sensing technique was consequently employed to detect the histamine levels in packed food items like fermented food samples (cheese, tomato sauce, tomato ketchup, and soy sauce) at room temperature (25 °C). The findings recommend the utilization of electrochemical sensing on modified WS/CS/SPE electrodes for accurate histamine detection.

摘要

组胺是人体某些细胞内的一种关键化学物质,负责引发各种过敏症状,如打喷嚏和流鼻涕。在过敏情况下,免疫系统会将某些通常无害的物质,如特定食物或灰尘,误识别为有害物质,因此高效的组胺传感器变得至关重要。本研究通过采用一种由水热合成的WS纳米片组成的材料,并将其与壳聚糖(CS)生物聚合物一起用于丝网印刷碳电极(SPE),引入了一种新型传感平台。通过滴铸将WS和CS组分整合到SPE上,协同提高了导电性和各种传感器性能。这种新型混合材料结合了有机CS和无机WS组分,用于通过差分脉冲伏安法进行非酶组胺检测。本研究还通过对合成的WS纳米片进行表征,测定了微晶尺寸并评估了表面形态。在SPE表面滴铸了WS和CS。建议在修饰的WS/CS/SPE电极上对组胺进行电化学测量。组胺测量在1 - 100 μM的线性范围内进行,检测限为0.0844 μM,灵敏度为1.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c86/11780422/368666297fd8/ao4c10419_0006.jpg

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