Umbilical cord blood regulatory T-cell expansion and functional effects of tumor necrosis factor receptor family members OX40 and 4-1BB expressed on artificial antigen-presenting cells

Author:

Hippen Keli L.1,Harker-Murray Paul1,Porter Stephen B.1,Merkel Sarah C.1,Londer Aryel1,Taylor Dawn K.1,Bina Megan1,Panoskaltsis-Mortari Angela1,Rubinstein Pablo2,Van Rooijen Nico3,Golovina Tatiana N.4,Suhoski Megan M.4,Miller Jeffrey S.5,Wagner John E.1,June Carl H.4,Riley James L.4,Blazar Bruce R.1

Affiliation:

1. University of Minnesota Cancer Center and Department of Pediatrics, Division of Bone, Blood and Marrow Transplantation, Minneapolis;

2. National Cord Blood Program, The New York Blood Center, New York;

3. Department of Molecular Cell Biology, Vrije Universiteit, Amsterdam, The Netherlands;

4. Abramson Family Cancer Center Research Institute, University of Pennsylvania Cancer Center, Philadelphia; and

5. University of Minnesota Cancer Center and Department of Medicine, Division of Bone Marrow Transplantation, Minneapolis

Abstract

Abstract Previously, we showed that human umbilical cord blood (UCB) regulatory T cells (Tregs) could be expanded approximately 100-fold using anti-CD3/28 monoclonal antibody (mAb)–coated beads to provide T-cell receptor and costimulatory signals. Because Treg numbers from a single UCB unit are limited, we explored the use of cell-based artificial antigen-presenting cells (aAPCs) preloaded with anti-CD3/28 mAbs to achieve higher levels of Treg expansion. Compared with beads, aAPCs had similar expansion properties while significantly increasing transforming growth factor β (TGF-β) secretion and the potency of Treg suppressor function. aAPCs modified to coexpress OX40L or 4-1BBL expanded UCB Tregs to a significantly greater extent than bead- or nonmodified aAPC cultures, reaching mean expansion levels exceeding 1250-fold. Despite the high expansion and in contrast to studies using other Treg sources, neither OX40 nor 4-1BB signaling of UCB Tregs reduced in vitro suppression. UCB Tregs expanded with 4-1BBL expressing aAPCs had decreased levels of proapoptotic bim. UCB Tregs expanded with nonmodified or modified aAPCs versus beads resulted in higher survival associated with increased Treg persistence in a xeno-geneic graft-versus-host disease lethality model. These data offer a novel approach for UCB Treg expansion using aAPCs, including those coexpressing OX40L or 4-1BBL.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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