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Published on: September 28, 2018
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.
Abstract:
Programmed death-1 (PD-1) protein is a co-inhibitory receptor which negatively regulates immune cell activation and permits tumors to evade normal immune defense. Anti-PD-1 antibodies have been shown to restore immune cell activation and effector function-an exciting breakthrough in cancer immunotherapy. Recent reports have documented a soluble form of PD-1 (sPD-1) in the circulation of normal and disease state individuals. A clinical assay to quantify sPD-1 would contribute to the understanding of sPD-1-function and facilitate the development of anti-PD-1 drugs. Here, we report the development and validation of a sPD-1 protein assay. The assay validation followed the framework for full validation of a biotherapeutic pharmacokinetic assay. A purified recombinant human PD-1 protein was characterized extensively and was identified as the assay reference material which mimics the endogenous analyte in structure and function. The lower limit of quantitation (LLOQ) was determined to be 100 pg/mL, with a dynamic range spanning three logs to 10,000 pg/mL. The intra- and inter-assay imprecision were ≤15%, and the assay bias (percent deviation) was ≤10%. Potential matrix effects were investigated in sera from both normal healthy volunteers and selected cancer patients. Bulk-prepared frozen standards and pre-coated Streptavidin plates were used in the assay to ensure consistency in assay performance over time. This assay appears to specifically measure total sPD-1 protein since the human anti-PD-1 antibody, nivolumab, and the endogenous ligands of PD-1 protein, PDL-1 and PDL-2, do not interfere with the assay.
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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