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.

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