Peptides identified on monocyte-derived dendritic cells: a marker for clinical immunogenicity to FVIII products

Author:

Jankowski Wojciech1,Park Yara2,McGill Joseph1,Maraskovsky Eugene3,Hofmann Marco4,Diego Vincent P.56,Luu Bernadette W.56,Howard Tom E.5678,Kellerman Roberta9,Key Nigel S.29ORCID,Sauna Zuben E.1ORCID

Affiliation:

1. Hemostasis Branch, Division of Plasma Protein Therapeutics, Office of Tissues and Advanced Therapeutics, Center for Biologics Evaluation and Research, US Food and Drug Administration, Silver Spring, MD;

2. Department of Laboratory Medicine and Pathology, University of North Carolina at Chapel Hill, Chapel Hill, NC;

3. Research, Bio21 Institute, CSL Limited, Melbourne, VIC, Australia;

4. Research, CSL Behring GmbH, Marburg, Germany;

5. South Texas Diabetes & Obesity Institute,

6. Department of Human Genetics, and

7. Department of Medical Education, School of Medicine, University of Texas Rio Grande Valley, Brownsville, TX;

8. Haplomics Biotechnology Corporation, Brownsville, TX; and

9. Department of Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC

Abstract

Abstract The immunogenicity of protein therapeutics is an important safety and efficacy concern during drug development and regulation. Strategies to identify individuals and subpopulations at risk for an undesirable immune response represent an important unmet need. The major histocompatibility complex (MHC)–associated peptide proteomics (MAPPs) assay directly identifies the presence of peptides derived from a specific protein therapeutic on a donor’s MHC class II (MHC-II) proteins. We applied this technique to address several questions related to the use of factor VIII (FVIII) replacement therapy in the treatment of hemophilia A (HA). Although >12 FVIII therapeutics are marketed, most fall into 3 categories: (i) human plasma-derived FVIII (pdFVIII), (ii) full-length (FL)–recombinant FVIII (rFVIII; FL-rFVIII), and (iii) B-domain–deleted rFVIII. Here, we investigated whether there are differences between the FVIII peptides found on the MHC-II proteins of the same individual when incubated with these 3 classes. Based on several observational studies and a prospective, randomized, clinical trial showing that the originally approved rFVIII products may be more immunogenic than the pdFVIII products containing von Willebrand factor (VWF) in molar excess, it has been hypothesized that the pdFVIII molecules yield/present fewer peptides (ie, potential T-cell epitopes). We have experimentally tested this hypothesis and found that dendritic cells from HA patients and healthy donors present fewer FVIII peptides when administered pdFVIII vs FL-rFVIII, despite both containing the same molar VWF excess. Our results support the hypothesis that synthesis of pdFVIII under physiological conditions could result in reduced heterogeneity and/or subtle differences in structure/conformation which, in turn, may result in reduced FVIII proteolytic processing relative to FL-rFVIII.

Publisher

American Society of Hematology

Subject

Hematology

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