Development and Fit-for-Purpose Validation of a Soluble Human Programmed Death-1 Protein Assay

Yan G Ni1, Xiling Yuan, John A Newitt

  • 1Bioanalytical Science-Biologics, Bristol-Myers Squibb, L4.016B, Route 206 & Province Line Rd, Princeton, New Jersey, 08543, USA, Yan.Ni@BMS.com.

The AAPS Journal
|May 1, 2015
PubMed

Insights

A new assay quantifies soluble programmed death-1 (sPD-1) protein in circulation. This tool aids understanding of sPD-1 function and advances anti-PD-1 cancer immunotherapy drug development.

Area of Science:

  • Immunology
  • Oncology
  • Biochemistry

Background:

  • Programmed death-1 (PD-1) is a co-inhibitory receptor that tumors exploit to evade immune responses.
  • Anti-PD-1 antibodies are a breakthrough in cancer immunotherapy, restoring immune cell function.
  • Soluble PD-1 (sPD-1) has been detected in circulation, but a clinical assay is needed.

Purpose of the Study:

  • To develop and validate a clinical assay for quantifying soluble PD-1 (sPD-1) protein.
  • To establish a reliable method for measuring sPD-1 levels in biological samples.
  • To support research into sPD-1 function and anti-PD-1 drug development.

Main Methods:

  • Developed and validated a protein assay for sPD-1 using a purified recombinant human PD-1 reference material.
  • Validated the assay according to biotherapeutic pharmacokinetic assay standards.
  • Investigated potential matrix effects in human sera and confirmed assay specificity against anti-PD-1 antibodies and ligands.

Main Results:

  • The sPD-1 assay demonstrated a lower limit of quantitation (LLOQ) of 100 pg/mL and a dynamic range of 100-10,000 pg/mL.
  • Assay precision was ≤15% (intra- and inter-assay), with a bias of ≤10%.
  • The assay specifically measures total sPD-1 and is not affected by nivolumab, PD-L1, or PD-L2.

Conclusions:

  • A robust and specific assay for quantifying soluble PD-1 (sPD-1) protein has been successfully developed and validated.
  • This assay provides a crucial tool for studying sPD-1's role in health and disease.
  • The validated assay will facilitate the development and clinical application of anti-PD-1 cancer immunotherapies.

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