Multiplexed Proteomic Analysis for Diagnosis and Screening of Five Primary Immunodeficiency Disorders From Dried

Christopher J Collins1, Fan Yi1, Remwilyn Dayuha1

  • 1Seattle Children's Research Institute, Seattle, WA, United States.

Insights

A novel immuno-SRM method accurately detects low-abundance proteins in dried blood spots for early diagnosis of Primary Immunodeficiencies Disorders (PIDDs), enabling effective newborn screening (NBS). This peptide analysis offers a robust tool for identifying and managing PIDDs from easily collected samples.

Area of Science:

  • Biochemistry and Molecular Biology
  • Immunology
  • Clinical Diagnostics

Background:

  • Early detection of Primary Immunodeficiencies Disorders (PIDDs) is crucial for timely and effective treatment.
  • Current newborn screening (NBS) methods face challenges in detecting low-abundance proteins in dried blood spots (DBS).
  • Quantifying specific proteins in DBS is an attractive strategy for PIDD screening, but limited by low concentrations and sample volume.

Purpose of the Study:

  • To develop and validate a multiplexed immuno-SRM assay for simultaneous screening of multiple PIDD-specific proteins from DBS.
  • To assess the efficacy of the immuno-SRM method for identifying patients with various PIDDs and monitoring treatment response.
  • To demonstrate the potential of a high-throughput immuno-SRM method for large-scale newborn screening.

Main Methods:

  • Development of a multiplexed peptide immunoaffinity enrichment coupled to selected reaction monitoring (immuno-SRM) panel.
  • Analysis of DBS samples from 28 PIDD patients and controls, including carriers, for five PIDD-specific and two cell-type specific proteins.
  • Validation of a high-throughput immuno-SRM method for rapid PIDD peptide screening.

Main Results:

  • The multiplexed immuno-SRM panel accurately identified reduced levels of disease-specific peptides in PIDD patients, showing excellent agreement with clinical diagnoses.
  • Cell-specific markers (CD42, CD56) provided additional diagnostic information, such as identifying thrombocytopenia in Wiskott-Aldrich Syndrome (WAS).
  • A post-bone marrow transplant WAS patient showed normalized protein levels, demonstrating the assay's utility in monitoring treatment efficacy.
  • The high-throughput immuno-SRM method yielded identical results to the standard assay, meeting NBS workflow requirements with a 2.5-min runtime.

Conclusions:

  • Immuno-SRM peptide analysis is a robust and reproducible method for quantifying low-abundance proteins in DBS for PIDD diagnosis.
  • The developed multiplexed and high-throughput assays show significant potential for early PIDD detection through newborn screening.
  • This approach facilitates the identification and study of PIDD patients using easily collected and shipped DBS samples.

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