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Dive into the research topics where Melanie Gubbels Bupp is active.

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Featured researches published by Melanie Gubbels Bupp.


Journal of Experimental Medicine | 2006

Insulin-induced remission in new-onset NOD mice is maintained by the PD-1–PD-L1 pathway

Brian T. Fife; Indira Guleria; Melanie Gubbels Bupp; Todd N. Eagar; Qizhi Tang; Hélène Bour-Jordan; Hideo Yagita; Miyuki Azuma; Mohamed H. Sayegh; Jeffrey A. Bluestone

The past decade has seen a significant increase in the number of potentially tolerogenic therapies for treatment of new-onset diabetes. However, most treatments are antigen nonspecific, and the mechanism for the maintenance of long-term tolerance remains unclear. In this study, we developed an antigen-specific therapy, insulin-coupled antigen-presenting cells, to treat diabetes in nonobese diabetic mice after disease onset. Using this approach, we demonstrate disease remission, inhibition of pathogenic T cell proliferation, decreased cytokine production, and induction of anergy. Moreover, we show that robust long-term tolerance depends on the programmed death 1 (PD-1)–programmed death ligand (PD-L)1 pathway, not the distinct cytotoxic T lymphocyte–associated antigen 4 pathway. Anti–PD-1 and anti–PD-L1, but not anti–PD-L2, reversed tolerance weeks after tolerogenic therapy by promoting antigen-specific T cell proliferation and inflammatory cytokine production directly in infiltrated tissues. PD-1–PD-L1 blockade did not limit T regulatory cell activity, suggesting direct effects on pathogenic T cells. Finally, we describe a critical role for PD-1–PD-L1 in another powerful immunotherapy model using anti-CD3, suggesting that PD-1–PD-L1 interactions form part of a common pathway to selectively maintain tolerance within the target tissues.


Clinical Immunology | 2007

Mechanisms of PDL1-mediated regulation of autoimmune diabetes

Indira Guleria; Melanie Gubbels Bupp; Shirine Dada; Brian T. Fife; Qizhi Tang; Mohammed Javeed Ansari; Subbulaxmi Trikudanathan; Nidyanandh Vadivel; Paolo Fiorina; Hideo Yagita; Miyuki Azuma; Mark A. Atkinson; Jeffrey A. Bluestone; Mohamed H. Sayegh


Clinical Immunology | 2014

Corrigendum to 'Mechanisms of PDL1-mediated regulation of autoimmune diabetes' [Clin. Immunol. 125 (2007) 16-25]

Indira Guleria; Melanie Gubbels Bupp; Shirine Dada; Brian T. Fife; Qizhi Tang; Mohammed Javeed Ansari; Subbulaxmi Trikudanathan; Nidyanandh Vadivel; Paolo Fiorina; Hideo Yagita; Miyuki Azuma; Mark A. Atkinson; Jeffrey A. Bluestone; Mohamed H. Sayegh


Clinical Immunology | 2007

The Programmed Death-1 (pd-1) Pathway Regulates Peripheral T Cell Tolerance During Autoimmune Diabetes in Nonobese Diabetic (NOD) Mice

Brian T. Fife; Indira Guleria; Melanie Gubbels Bupp; Qizhi Tang; Todd N. Eagar; Hélène Bour-Jordan; Hideo Yagita; Miyuki Azuma; Mohamed H. Sayegh; Jeffrey A. Bluestone


Journal of Immunology | 2016

Characterizing surface costimulatory molecule expression on plasmacytoid dendritic cells in male and female B6.Nba2 lupus-prone mice.

Melanie Gubbels Bupp; Timothy Thoner; Trine N. Jørgensen


Journal of Immunology | 2013

The forkhead transcription factor, Foxo1, fine-tunes sensitivity to homeostatic signals during calorie restriction in CD8+ cytotoxic T cells (P1292)

Melanie Gubbels Bupp; Seth Litvin; Victoria Robinson


Journal of Immunology | 2012

The forkhead transcription factor, Foxo1, coordinates an adaptive, pro-survival response to calorie restriction in T cells

Melanie Gubbels Bupp; R. Edwards


Journal of Immunology | 2011

Investigating the involvement of Foxo1 in T cell repertoire diversity

Melanie Gubbels Bupp; Erica Horseman


Journal of Immunology | 2010

Investigating the involvement of Foxo1 in T cell ageing

Melanie Gubbels Bupp


Journal of Immunology | 2007

The forkhead transcription factor Foxq1 enhances NF-kB activity and is critical for robust T cell activation and autoimmunity

Melanie Gubbels Bupp; Stanford L. Peng

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Indira Guleria

Brigham and Women's Hospital

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Mohamed H. Sayegh

Brigham and Women's Hospital

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Miyuki Azuma

Tokyo Medical and Dental University

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Qizhi Tang

University of California

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