OBJECTIVE - To investigate a new clinically relevant immunoregulatory strategy based on treatment with murine Thymoglobulin mATG Genzyme and CTLA4-Ig in NOD mice to prevent alloand autoimmune activation using a stringent model of islet transplantation and diabetes reversal. RESEARCH DESIGN AND METHODS - Using allogeneic islet transplantation models as well as NOD mice with recent onset type 1 diabetes, we addressed the therapeutic efficacy and immunomodulatory mechanisms associated with a new immunoregulatory protocol based on prolonged low-dose mATG plus CTLA4-Ig. RESULTS - BALB/c islets transplanted into hyperglycemic NOD mice under prolonged mATG+CTLA4-Ig treatment showed a pronounced delay in allograft rejection compared with untreated mice (mean survival time: 54 vs. 8 days, P < 0.0001). Immunologic analysis of mice receiving transplants revealed a complete abrogation of autoimmune responses and severe downregulation of alloimmunity in response to treatment. The striking effect on autoimmunity was confirmed by 100% diabetes reversal in newly hyperglycemic NOD mice and 100% indefinite survival of syngeneic islet transplantation (NOD.SCID into NOD mice). CONCLUSIONS - The capacity to regulate alloimmunity and to abrogate the autoimmune response in NOD mice in different settings confirmed that prolonged mATG+CTLA4-Ig treatment is a clinically relevant strategy to translate to humans with type 1 diabetes.

A novel clinically relevant strategy to abrogate autoimmunity and regulate alloimmunity in NOD mice / A. Vergani, F. D'Addio, M. Jurewicz, A. Petrelli, T. Watanabe, K. Liu, K. Law, C. Schuetz, M. Carvello, E. Orsenigo, S. Deng, S.J. Rodig, J.M. Ansari, C. Staudacher, R. Abdi, J. Williams, J. Markmann, M. Atkinson, M.H. Sayegh, P. Fiorina. - In: DIABETES. - ISSN 0012-1797. - 59:9(2010), pp. 2253-2264. [10.2337/db09-1264]

A novel clinically relevant strategy to abrogate autoimmunity and regulate alloimmunity in NOD mice

F. D'Addio
Secondo
;
C. Staudacher;P. Fiorina
Ultimo
2010

Abstract

OBJECTIVE - To investigate a new clinically relevant immunoregulatory strategy based on treatment with murine Thymoglobulin mATG Genzyme and CTLA4-Ig in NOD mice to prevent alloand autoimmune activation using a stringent model of islet transplantation and diabetes reversal. RESEARCH DESIGN AND METHODS - Using allogeneic islet transplantation models as well as NOD mice with recent onset type 1 diabetes, we addressed the therapeutic efficacy and immunomodulatory mechanisms associated with a new immunoregulatory protocol based on prolonged low-dose mATG plus CTLA4-Ig. RESULTS - BALB/c islets transplanted into hyperglycemic NOD mice under prolonged mATG+CTLA4-Ig treatment showed a pronounced delay in allograft rejection compared with untreated mice (mean survival time: 54 vs. 8 days, P < 0.0001). Immunologic analysis of mice receiving transplants revealed a complete abrogation of autoimmune responses and severe downregulation of alloimmunity in response to treatment. The striking effect on autoimmunity was confirmed by 100% diabetes reversal in newly hyperglycemic NOD mice and 100% indefinite survival of syngeneic islet transplantation (NOD.SCID into NOD mice). CONCLUSIONS - The capacity to regulate alloimmunity and to abrogate the autoimmune response in NOD mice in different settings confirmed that prolonged mATG+CTLA4-Ig treatment is a clinically relevant strategy to translate to humans with type 1 diabetes.
abatacept; animals; antibodies, monoclonal; antilymphocyte serum; autoimmunity; cell division; cytokines; diabetes mellitus, type 1; enzyme-linked immunosorbent assay; graft rejection; humans; immunoconjugates; immunosuppressive agents; islets of langerhans transplantation; mice; mice, inbred NOD; ovalbumin; skin transplantation; transplantation, homologous; internal medicine; endocrinology, diabetes and metabolism; medicine (all))
Settore MED/13 - Endocrinologia
2010
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/499282
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