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基于纳米材料的小细胞肺癌生物标志物神经元特异性烯醇化酶电化学免疫传感器的进展与挑战

Advances and Challenges in Nanomaterial-Based Electrochemical Immunosensors for Small Cell Lung Cancer Biomarker Neuron-Specific Enolase.

作者信息

Mehta Daisy, Gupta Divyani, Kafle Alankar, Kaur Sukhjot, Nagaiah Tharamani C

机构信息

Department of Chemistry, Indian Institute of Technology Ropar, Rupnagar, Punjab 140001, India.

出版信息

ACS Omega. 2023 Dec 25;9(1):33-51. doi: 10.1021/acsomega.3c06388. eCollection 2024 Jan 9.

Abstract

Early and rapid detection of neuron-specific enolase (NSE) is highly significant, as it is putative biomarker for small-cell lung cancer as well as COVID-19. Electrochemical techniques have attracted substantial attention for the early detection of cancer biomarkers due to the important properties of simplicity, high sensitivity, specificity, low cost, and point-of-care detection. This work reviews the clinically relevant labeled and label-free electrochemical immunosensors developed so far for the analysis of NSE. The prevailing role of nanostructured materials as electrode matrices is thoroughly discussed. Subsequently, the key performances of various immunoassays are critically evaluated in terms of limit of detection, linear ranges, and incubation time for clinical translation. Electrochemical techniques coupled with screen-printed electrodes developing market level commercialization of NSE sensors is also discussed. Finally, the review concludes with the current challenges associated with available methods and provides a future outlook toward commercialization opportunities for easy detection of NSE.

摘要

神经元特异性烯醇化酶(NSE)的早期快速检测具有重要意义,因为它是小细胞肺癌以及新冠病毒病的潜在生物标志物。由于具有操作简单、灵敏度高、特异性强、成本低和即时检测等重要特性,电化学技术在癌症生物标志物的早期检测方面备受关注。本文综述了迄今为止开发的用于分析NSE的临床相关的标记和无标记电化学免疫传感器。深入讨论了纳米结构材料作为电极基质的主要作用。随后,从检测限、线性范围和临床转化所需的孵育时间等方面对各种免疫分析方法的关键性能进行了严格评估。还讨论了结合丝网印刷电极的电化学技术推动NSE传感器达到市场水平的商业化。最后,综述总结了现有方法面临的当前挑战,并展望了NSE简易检测商业化机会的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa25/10785636/c94b6ef5b2e0/ao3c06388_0001.jpg

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