Unexpected enhancement of FVIII immunogenicity by endothelial expression in lentivirus-transduced and transgenic mice

Author:

Shi Qizhen1234ORCID,Carman Christopher V.5ORCID,Chen Yingyu12,Sage Peter T.6ORCID,Xue Feng12,Liang Xin M.7,Gilbert Gary E.7

Affiliation:

1. Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI;

2. Blood Research Institute, Versiti Wisconsin, Milwaukee, WI;

3. Children’s Research Institute, Children’s Wisconsin, Milwaukee, WI;

4. Midwest Athletes Against Childhood Cancer Fund Research Center, Milwaukee, WI;

5. Molecular and Integrative Physiological Sciences Program, Harvard School of Public Health, Boston, MA;

6. Renal Division, Transplant Research Center, Brigham and Women’s Hospital and Harvard Medical School, Boston, MA; and

7. Department of Medicine, Veterans Affairs Boston Healthcare System and Harvard Medical School, Boston, MA

Abstract

Abstract Factor VIII (FVIII) replacement therapy for hemophilia A is complicated by development of inhibitory antibodies (inhibitors) in ∼30% of patients. Because endothelial cells (ECs) are the primary physiologic expression site, we probed the therapeutic potential of genetically restoring FVIII expression selectively in ECs in hemophilia A mice (FVIIInull). Expression of FVIII was driven by the Tie2 promoter in the context of lentivirus (LV)-mediated in situ transduction (T2F8LV) or embryonic stem cell–mediated transgenesis (T2F8Tg). Both endothelial expression approaches were associated with a strikingly robust immune response. Following in situ T2F8LV-mediated EC transduction, all FVIIInull mice developed inhibitors but had no detectable plasma FVIII. In the transgenic approach, the T2F8Tg mice had normalized plasma FVIII levels, but showed strong sensitivity to developing an FVIII immune response upon FVIII immunization. A single injection of FVIII with incomplete Freund adjuvant led to high titers of inhibitors and reduction of plasma FVIII to undetectable levels. Because ECs are putative major histocompatibility complex class II (MHCII)-expressing nonhematopoietic, “semiprofessional” antigen-presenting cells (APCs), we asked whether they might directly influence the FVIII immune responses. Imaging and flow cytometric studies confirmed that both murine and human ECs express MHCII and efficiently bind and take up FVIII protein in vitro. Moreover, microvascular ECs preconditioned ex vivo with inflammatory cytokines could functionally present exogenously taken-up FVIII to previously primed CD4+/CXCR5+ T follicular helper (Tfh) cells to drive FVIII-specific proliferation. Our results show an unanticipated immunogenicity of EC-expressed FVIII and suggest a context-dependent role for ECs in the regulation of inhibitors as auxiliary APCs for Tfh cells.

Publisher

American Society of Hematology

Subject

Hematology

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