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Leukemic marker detection using a spectro-polarimetric surface plasmon resonance platform
Mathieu Maisonneuve1, Chiara Valsecchi2, Chen Wang3
1Department of Engineering Physics, École Polytechnique de Montreal, Montreal, QC, Canada.
Insights
A novel surface plasmon resonance (SPR) bio-sensing platform offers efficient screening for monoclonal immunoglobulin, a key leukemia tumor marker. This method accurately detects the kappa/lambda light chain ratio for early leukemia diagnosis.
Area of Science:
- Biomedical Engineering
- Immunology
- Analytical Chemistry
Background:
- Monoclonal immunoglobulin detection is crucial for leukemia diagnosis.
- Current methods for immunoglobulin detection can be costly and time-consuming.
- There is a need for efficient and accessible leukemia biomarker screening tools.
Purpose of the Study:
- To present a proof-of-concept for a surface plasmon resonance (SPR) bio-sensing platform for monoclonal immunoglobulin screening.
- To evaluate the platform's ability to detect the kappa/lambda light chain ratio as a leukemia tumor marker.
- To demonstrate the platform's potential for early leukemia diagnosis and monitoring.
Main Methods:
- Utilized a surface plasmon resonance (SPR) bio-sensing platform for high-resolution measurements.
- Measured immunoglobulin levels and kappa/lambda light chain concentrations in human serum.
- Validated the platform using standard immunoglobulin solutions and patient serum samples with known leukemic diagnoses.
Main Results:
- The SPR platform achieved a resolution of 5×10(-7) refractive index unit (RIU) per channel, surpassing other SPR imaging systems.
- Results from the SPR platform were in agreement with conventional immunoglobulin detection methods.
- The kappa/lambda ratio effectively indicated the presence of monoclonal immunoglobulin in patient samples.
Conclusions:
- The developed polarimetric SPR platform is a promising tool for leukemia biomarker screening.
- This technology offers a potentially cheap and efficient method for early leukemia detection and monitoring.
- The high resolution and accuracy of the SPR platform support its clinical applicability.
Abstract:
In this paper, we present a proof of concept screening for monoclonal immunoglobulin as a leukemia tumor marker using a surface plasmon resonance (SPR) bio-sensing platform. This screening method is based on measurements of immunoglobulin levels in human serum and the determination of the relative concentrations of kappa and lambda light chains. The kappa/lambda ratio is used to determine the presence of monoclonal immunoglobulin. Tests have been performed using standard solutions of immunoglobulins and serum samples from patients with known leukemic diagnoses. This platform has a resolution of 5×10(-7) refractive index unit (RIU) per channel, which is up to 10 times better than other SPR imaging systems for multi-sensing applications. The results obtained with this technique are in agreement with those acquired using conventional methods for immunoglobulin detection, indicating that our polarimetric SPR platform should be suitable for a cheap and efficient tool for early leukemia biomarker screening and monitoring applications.
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