Reversal of Experimental Autoimmune Diabetes With an sCD39/Anti-CD3 Treatment

Author:

Fotino Carmen1ORCID,Molano R. Damaris1,Ben Nasr Moufida23,Umland Oliver1,Fraker Christopher A.14,Ulissi Ulisse1,Balasubramanian Hari Baskar2,Lunati Maria Elena5,Usuelli Vera2,Seelam Andy Joe2,Khalefa Salma Ayman2,La Sala Christian1,Gimeno Jennifer1,Mendez Armando J.14,Ricordi Camillo14678,Bayer Allison L.17,Fiorina Paolo235ORCID,Pileggi Antonello1478ORCID

Affiliation:

1. 1Cell Transplant Center, Diabetes Research Institute, University of Miami, Miami, FL

2. 2International Center for T1D, Pediatric Clinical Research Center “Romeo ed Enrica Invernizzi,” Department of Biomedical and Clinical Science L. Sacco, University of Milan, Milan, Italy

3. 3Nephrology Division, Boston Children's Hospital, Harvard Medical School, Boston, MA

4. 4Division of Cellular Transplantation, DeWitt Daughtry Department of Surgery, Miller School of Medicine, University of Miami, Miami, FL

5. 5Division of Endocrinology, Azienda Socio-Sanitaria Territoriale (ASST) Fatebenefratelli-Sacco, Milan, Italy

6. 6Division of Endocrinology, Department of Medicine, Miller School of Medicine, University of Miami, Miami, FL

7. 7Department of Microbiology and Immunology, Miller School of Medicine, University of Miami, Miami, FL

8. 8Department of Biomedical Engineering, University of Miami, Miami, FL

Abstract

Extracellular (e)ATP, a potent proinflammatory molecule, is released by dying/damaged cells at the site of inflammation and is degraded by the membrane ectonucleotidases CD39 and CD73. In this study, we sought to unveil the role of eATP degradation in autoimmune diabetes. We then assessed the effect of soluble CD39 (sCD39) administration in prevention and reversal studies in NOD mice as well as in mechanistic studies. Our data showed that eATP levels were increased in hyperglycemic NOD mice compared with prediabetic NOD mice. CD39 and CD73 were found expressed by both α- and β-cells and by different subsets of T cells. Importantly, prediabetic NOD mice displayed increased frequencies of CD3+CD73+CD39+ cells within their pancreata, pancreatic lymph nodes, and spleens. The administration of sCD39 into prediabetic NOD mice reduced their eATP levels, abrogated the proliferation of CD4+- and CD8+-autoreactive T cells, and increased the frequency of regulatory T cells, while delaying the onset of T1D. Notably, concomitant administration of sCD39 and anti-CD3 showed a strong synergism in restoring normoglycemia in newly hyperglycemic NOD mice compared with monotherapy with anti-CD3 or with sCD39. The eATP/CD39 pathway plays an important role in the onset of T1D, and its targeting might represent a potential therapeutic strategy in T1D. Article Highlights

Funder

Fondazione Diabete Ricerca (FO.DI.RI) Società Italiana di Diabetologia (SID) fellowship

Italian Ministry of Health

Diabetes Research Institute Foundation

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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