Related Experiment Video
Updated: Dec 24, 2025

Dried Blood and Serum Spots As A Useful Tool for Sample Storage to Evaluate Cancer Biomarkers
Published on: June 11, 2018
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.
Abstract:
Early detection of Primary Immunodeficiencies Disorders (PIDDs) is of paramount importance for effective treatment and disease management. Many PIDDs would be strong candidates for newborn screening (NBS) if robust screening methods could identify patients from dried blood spots (DBS) during the neonatal period. As majority of congenital PIDDs result in the reduction or absence of specific proteins, direct quantification of these target proteins represents an attractive potential screening tool. Unfortunately, detection is often limited by the extremely low protein concentrations in blood cells and limited blood volume present in DBS. We have recently developed a robust novel method for quantification of low abundance proteins in DBS for PIDDs using peptide immunoaffinity enrichment coupled to selected reaction monitoring (immuno-SRM). Here, we further generated a multiplexed Immuno-SRM panel for simultaneous screening of eight signature peptides representing five PIDD-specific and two cell-type specific proteins from DBS. In samples from 28 PIDD patients including two carriers, representing X-Linked Agammaglobulinemia (XLA), Wiskott-Aldrich Syndrome (WAS), X-Linked Chronic Granulomatous Disease (XL-CGD), DOCK8 Deficiency and ADA deficiency, peptides representing each disease are significantly reduced relative to normal controls and patient identification had excellent agreement with clinical and molecular diagnosis. Also included in the multiplex panel are cell specific markers for platelets (CD42) and Natural Killer Cells (CD56). In patients with WAS, CD42 levels were found to be significantly reduced consistent with characteristic thrombocytopenia. A patient with WAS analyzed before and after bone marrow transplant showed normalized WAS protein and platelet CD42 after treatment highlighting the ability of immuno-SRM to monitor the effects of PIDD treatment. The assay was readily reproduced in two separate laboratories with similar analytical performance and complete agreement in patient diagnosis demonstrating the effective standardized methods. A high-throughput Immuno-SRM method screens PIDD-specific peptides in a 2.5-min runtime meeting high volume NBS workflow requirements was also demonstrated in this report. This high-throughput method returned identical results to the standard Immuno-SRM PIDD panel. Immuno-SRM peptide analysis represents a robust potential clinical diagnostic for identifying and studying PIDD patients from easily collected and shipped DBS and supports a significant potential for early PIDD diagnosis through newborn screening.
More Related Videos
07:08A High Throughput, Multiplexed and Targeted Proteomic CSF Assay to Quantify Neurodegenerative Biomarkers and Apolipoprotein E Isoforms Status
Published on: October 20, 2016
11:28Dried Blood Spots - Preparing and Processing for Use in Immunoassays and in Molecular Techniques
Published on: March 13, 2015