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Updated: Sep 26, 2025

Development and Validation of an Ultrasensitive Single Molecule Array Digital Enzyme-linked Immunosorbent Assay for Human Interferon-α
Published on: June 14, 2018
Interferon-γ detection in point of care diagnostics: Short review
Manjoosha Yerrapragada R1, Dileep Mampallil1
1Indian Institute of Science Education and Research Tirupati, Mangalam P O, Tirupati, 517507, India.
Insights
This review explores biosensing methods for detecting interferon-gamma (IFN-γ), a key indicator of diseases like tuberculosis. It details optical, electrochemical, and mechanical sensors utilizing antibodies and aptamers for accurate detection.
Area of Science:
- Biomedical Engineering
- Immunology
- Analytical Chemistry
Background:
- Interferon-gamma (IFN-γ) is a crucial cytokine produced by immune cells.
- Elevated IFN-γ levels serve as early biomarkers for diseases including tuberculosis and autoimmune disorders.
- Accurate and sensitive detection of IFN-γ is vital for early disease diagnosis and management.
Purpose of the Study:
- To review and summarize various sensing strategies for interferon-gamma (IFN-γ) detection.
- To discuss the application of biorecognition molecules like antibodies and aptamers in IFN-γ sensing platforms.
- To compare different surface functionalization techniques employed in biosensor development.
Main Methods:
- Exploration of sensing principles including optical, electrochemical, and mechanical methods.
- Detailed examination of biorecognition elements (antibodies, aptamers) for specific IFN-γ binding.
- Analysis of surface modification strategies to enhance sensor performance and stability.
Main Results:
- Various biosensing approaches offer sensitive and specific detection of IFN-γ.
- Antibodies and aptamers provide effective biorecognition for IFN-γ targets.
- Surface functionalization significantly impacts sensor efficiency and reliability.
Conclusions:
- Biosensors based on optical, electrochemical, and mechanical principles are effective for IFN-γ detection.
- The reviewed sensing strategies can be adapted for detecting other disease biomarkers.
- Advancements in biosensor technology hold promise for improved diagnostics.
Abstract:
Interferon (IFN)-γ is a cytokine secreted by immune cells. The elevated levels of IFN-γ are an early indicator of multiple diseases such as tuberculosis and autoimmune diseases. This short review focuses on different sensing methods based on optical, electrochemical, and mechanical principles. We explain how specific biorecognition molecules such as antibodies and aptamers are employed in the sensing methods. We also compare different surface functionalization methods and their details. Although the review gives an overview of only IFN-γ sensing, the same strategies can be applied to sensing other analytes with appropriate modifications.
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