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Updated: Aug 22, 2025

Label-free Single Molecule Detection Using Microtoroid Optical Resonators
Published on: December 29, 2015
Hemolysis-Inspired, Highly Sensitive, Label-Free IgM Detection Using Erythrocyte Membrane-Functionalized
Taeha Lee1,2, Woong Kim3, Jinsung Park4
1Department of Biotechnology and Bioinformatics, Korea University, Sejong 30019, Korea.
Insights
This study introduces a label-free biosensor using erythrocyte membranes on microcantilevers for antibody detection. This nanomechanical resonator achieves sensitive detection of immunoglobulin M (IgM) and offers potential for forensic and immune status applications.
Area of Science:
- Nanotechnology
- Biosensing
- Immunology
Background:
- Immunoglobulin detection is crucial for diagnostics but often limited by labeling methods in immunoassays.
- Current antigen immobilization techniques lack precise control, reducing biosensor reproducibility.
Purpose of the Study:
- To develop a label-free antibody detection method using microcantilever-based nanomechanical resonators.
- To functionalize microcantilevers with erythrocyte membranes for enhanced antibody binding.
Main Methods:
- Fabrication of erythrocyte membrane-functionalized microcantilevers (EMMC).
- Utilizing the nanomechanical resonator's response to antibody binding to blood type antigens on the erythrocyte membrane.
- Assessing assay performance including limit of detection (LOD) and selectivity.
Main Results:
- The EMMC demonstrated successful bioassay performance for immunoglobulin M (IgM) detection.
- Achieved a linear detection range from 2.2 pM to 22 nM with a limit of detection (LOD) of 2.0 pM.
- Showcased excellent selectivity against other biomolecules.
Conclusions:
- The EMMC-based nanotechnology offers a sensitive and reproducible label-free method for antibody detection.
- Potential applications include forensic blood type identification and individual immune status evaluation via neutralizing antibody detection.
Abstract:
Immunoglobulin detection is important for immunoassays, such as diagnosing infectious diseases, evaluating immune status, and determining neutralizing antibody concentrations. However, since most immunoassays rely on labeling methods, there are limitations on determining the limit of detection (LOD) of biosensors. In addition, although the antigen must be immobilized via complex chemical treatment, it is difficult to precisely control the immobilization concentration. This reduces the reproducibility of the biosensor. In this study, we propose a label-free method for antibody detection using microcantilever-based nanomechanical resonators functionalized with erythrocyte membrane (EM). This label-free method focuses on the phenomenon of antibody binding to oligosaccharides (blood type antigen) on the surface of the erythrocyte. We established a method for extracting the EM from erythrocytes and fabricated an EM-functionalized microcantilever (MC), termed EMMC, by surface-coating EM layers on the MC. When the EMMC was treated with immunoglobulin M (IgM), the bioassay was successfully performed in the linear range from 2.2 pM to 22 nM, and the LOD was 2.0 pM. The EMMC also exhibited excellent selectivity compared to other biomolecules such as serum albumin, γ-globulin, and IgM with different paratopes. These results demonstrate that EMMC-based nanotechnology may be utilized in criminal investigations to identify blood types with minimal amounts of blood or to evaluate individual immunity through virus-neutralizing antibody detection.
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