Donor-Specific Regulatory T Cell-Mediated Immune Tolerance in an Intrahepatic Murine Allogeneic Islet Transplantation Model with Short-Term Anti-CD154 mAb Single Treatment

Author:

Lee Seok-Joo12345,Kim Hyun-Je1236,Byun Na-ri1237,Park Chung-Gyu12346ORCID

Affiliation:

1. Department of Microbiology and Immunology, Seoul National University College of Medicine, Seoul, Korea

2. Department of Biomedical Science, Seoul National University Graduate School, Seoul, Korea

3. Xenotransplantation Research Center, Seoul National University College of Medicine, Seoul, Korea

4. Cancer Research Institute, Seoul National University College of Medicine, Seoul, Korea

5. Department of Oral Microbiology and Immunology, Seoul National University School of Dentistry, Seoul, Korea

6. Department of Dermatology, Samsung Medical Center, Seoul, Korea

7. Byun is now with the Hanmi R&D center, Hwaseong-si, Gyeonggi-do18469, Korea.

Abstract

Anti-CD154 blockade-based regimens remain unequaled in prolonging graft survival in various organ transplantation models. Several studies have focused on transplantation tolerance with the anti-CD154 blockade, but none of these studies has investigated the mechanisms associated with its use as the sole treatment in animal models, delaying our understanding of anti-CD154 blockade-mediated immune tolerance. The purpose of this study was to investigate the mechanism underlying the anti-CD154 monoclonal antibody (mAb) blockade in inducing immune tolerance using an intrahepatic murine allogeneic islet transplantation model. Allogeneic BALB/c AnHsd (BALB/c) islets were infused into the liver of diabetic C57BL/6 (B6) mice via the cecal vein. Anti-CD154 mAb (MR1) was administered on −1, 0, 1, 3, 5, and 7 d posttransplantation at 0.5 mg per mouse. We showed that short-term MR1 monotherapy could prolong the allogeneic islet grafts to more than 250 d in the murine intrahepatic islet transplantation model. The second islet grafts transplanted under the kidney capsule of the recipients were protected from rejection. We also found that rejection of same-donor skin grafts transplanted to the tolerant mice was modestly delayed. Using a DEREG mouse model, FoxP3+ regulatory T (Treg) cells were shown to play important roles in transplantation tolerance. In mixed lymphocyte reactions, Treg cells from the tolerant mice showed more potency in suppressing BALB/c splenocyte-stimulated Teff cell proliferation than those from naïve mice. In this study, we demonstrated for the first time that a short-term anti-CD154 mAb single treatment could induce FoxP3+ Treg cell-mediated immune tolerance in the intrahepatic murine allogeneic islet transplantation model.

Funder

Korea Healthcare Technology R&D project, Ministry of Health & Welfare

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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