Review- Significant Advancements in Electrochemical Detection of Neuron-Specific Enolase
Downloads
Published
DOI:
https://doi.org/10.58414/SCIENTIFICTEMPER.2022.13.2.33Keywords:
Electrochemical technique, biomarker, cancerDimensions Badge
Issue
Section
License
Copyright (c) 2022 The Scientific Temper

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Electrochemical technique has attracted the substantial attention for the early detection of cancer biomarkers due to its imperative properties like simplicity, high sensitivity, specificity, low cost) and point of care detection. This article has reviewed the clinically relevant electrochemical immunosensors developed so far for the analysis of neuron specific enolase (NSE), a biomarker for Small cell lung cancer. Firstly, we have different Categorized the immunoassay techniques used to monitor NSE has been discussed.NSE immunosensors are particularly, divided into three main categories (a) Sandwich assay (b) Direct detection assay and (c) indirect detection assay. The Prevailing role of nano structured materials as electrode matrices and as electroactive has been discussed. Subsequently, the key performances of various immunoassays have been critically evaluated in terms of limit of detection, linear ranges and incubation time for clinical translation. Electrochemical techniques coupled with screen printed electrodes developed market level commercialization of NSE sensors have also been discussed. Finally, the review concludes the current challenges associated to available methods and provides a future outlook towards commercialization opportunities for easy detection of NSE.Abstract
How to Cite
Downloads
Similar Articles
- S. TAMIL FATHIMA, K. FATHIMA BIBI, Early diagnosis of cardiac disease using Xgboost ensemble voting-based feature selection, based lightweight recurrent neural network approach , The Scientific Temper: Vol. 16 No. 06 (2025): The Scientific Temper
- Sabeerath K, Manikandasaran S. Sundaram, ESPoW: Efficient and secured proof of ownership method to enable authentic deduplicated data access in public cloud storage , The Scientific Temper: Vol. 15 No. 04 (2024): The Scientific Temper
- Vishakha Khambhati, Rajan Kumar Singh, Assessment of Respiratory Dynamics from ECG during Physical Exertion , The Scientific Temper: Vol. 17 No. 01 (2026): The Scientific Temper
- Hashmat Ali, Nishant Soren, Rohit Kumar Ravi, Kunal Kumar, Anjali, Evaluation of Standard Changes in Enthalpy During Complex Formation of Mn(II), Ni(II), Cd(II) and Hg(II) with p-fluorobenzoylthioacetophenone , The Scientific Temper: Vol. 13 No. 02 (2022): The Scientific Temper
- Raju Prasad Singh, R.K. Verma, Study of Josephson Effect Between Bose Condensate , The Scientific Temper: Vol. 11 No. 1&2 (2020): The Scientific Temper
- Susithra N, Rajalakshmi K, Ashwath P, Performance analysis of compressive sensing and reconstruction by LASSO and OMP for audio signal processing applications , The Scientific Temper: Vol. 14 No. 01 (2023): The Scientific Temper
- Simeon P, Vijayalakshmi D, Design and development of wall hanging and plant hangers using tie and dye , The Scientific Temper: Vol. 14 No. 02 (2023): The Scientific Temper
- Hashmat Ali, Nishant Soren, Rohit Kumar Ravi, Kunal Kumar, Anjali, Evaluation of Standard Changes in Free Energy During Complexation of p-chlorobenzoylthioacetophenone with Some Bivalent Transition Metals , The Scientific Temper: Vol. 13 No. 02 (2022): The Scientific Temper
- Priyanka U, Nirmala Varghese, Design transformation: Ajrakh traditional printing to hand painting , The Scientific Temper: Vol. 14 No. 02 (2023): The Scientific Temper
- Shivali Kundan, Neha Verma, Zahid Nabi, Dinesh Kumar, Satellite radiance assimilation using the 3D-var technique for the heavy rainfall over the Indian region , The Scientific Temper: Vol. 13 No. 02 (2022): The Scientific Temper
<< < 1 2 3 4 5 6 7 8 9 10 > >>
You may also start an advanced similarity search for this article.

