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Dive into the research topics where Scott Ronald Brodeur is active.

Publication


Featured researches published by Scott Ronald Brodeur.


Journal of Pharmacology and Experimental Therapeutics | 2016

Unexpected Potency Differences between B-Cell–Activating Factor (BAFF) Antagonist Antibodies against Various Forms of BAFF: Trimer, 60-Mer, and Membrane-Bound

Amy Marie Nicoletti; Cynthia Hess Kenny; Ashraf Khalil; Qi Pan; Kerry L. M. Ralph; Julie Ritchie; Sathyadevi Venkataramani; David Presky; Scott M. DeWire; Scott Ronald Brodeur

Therapeutic agents antagonizing B-cell–activating factor/B-lymphocyte stimulator (BAFF/BLyS) are currently in clinical development for autoimmune diseases; belimumab is the first Food and Drug Administration–approved drug in more than 50 years for the treatment of lupus. As a member of the tumor necrosis factor superfamily, BAFF promotes B-cell survival and homeostasis and is overexpressed in patients with systemic lupus erythematosus and other autoimmune diseases. BAFF exists in three recognized forms: membrane-bound and two secreted, soluble forms of either trimeric or 60-mer oligomeric states. To date, most in vitro pharmacology studies of BAFF neglect one or more of these forms. Here, we report a comprehensive in vitro cell-based analysis of BAFF in assay systems that measure all forms of BAFF-mediated activation. We demonstrate the effects of these BAFF forms in both a primary human B-cell proliferation assay and in nuclear factor κB reporter assay systems in Chinese hamster ovary cells expressing BAFF receptors and transmembrane activator and calcium-modulator and cyclophilin ligand interactor (TACI). In contrast to the mouse system, we find that BAFF trimer activates the human TACI receptor. Further, we profiled the activities of two clinically advanced BAFF antagonist antibodies, belimumab and tabalumab. Unexpectedly, we revealed differences in inhibitory potencies against the various BAFF forms, in particular that belimumab does not potently inhibit BAFF 60-mer. Through this increased understanding of the activity of BAFF antagonists against different forms of BAFF, we hope to influence the discovery of BAFF antagonist antibodies with distinct therapeutic mechanisms for improvement in the treatment of lupus or other related autoimmune pathologies.


Archive | 2015

Novel anti-baff antibodies

Scott Ronald Brodeur; Keith Canada; Pankaj Gupta; Amy Marie Nicoletti; Qi Pan; Sanjaya Singh; Michael Dziegelewski; Philip Nicholas Gorman; Ashraf Khalil; John Miglietta; David Presky; Tao Wu; Haiguang Xiao


Archive | 2017

Anti-BAFF antibodies

Scott Ronald Brodeur; Keith Canada; Mlchael Dziegelewski; Philip Nicholas Gorman; Pankaj Gupta; Ashraf Khalil; John Miglietta; Amy Marie Nicoletti; Qi Pan; David Presky; Sanjaya Singh; Tao Wu; Haiguang Xiao


Archive | 2017

COMPOUND TARGETING IL-23A AND TNF-ALPHA AND USES THEREOF

Rachel Rebecca Barrett; Leslie S. Johnson; Sanjaya Singh; Kathleen Last-Barney; Daw-tsun Shih; Patricia Giblin; Scott Ronald Brodeur; Nelamangala Nagaraja


Archive | 2016

COMPUESTO DE OBJETIVO A IL-23A y TNF-ALFA Y USO DEL MISMO

Rachel Rebecca B; Johnson Leslie S; Sanjaya Singh; Last-Barney Kathleen; Shih Daw-Tsun; Patricia Giblin; Scott Ronald Brodeur; Nelamangala Nagaraja; Shih Daw Tsun


Archive | 2016

USE OF ANTI-CD40 ANTIBODIES FOR TREATMENT OF LUPUS NEPHRITIS

Scott Ronald Brodeur; Thomas B. Freeman; Gerald Nabozny; Meera Ramanujam; Paul Scholl; Juergen Steffgen


Archive | 2016

Utilisation d'anticorps anti-cd40 pour le traitement de la néphrite lupique

Scott Ronald Brodeur; Thomas B. Freeman; Gerald H. Nabozny; Meera Ramanujam; Paul Scholl; Juergen Steffgen


Archive | 2013

Polynucleotides encoding anti-CD40 antibodies

Rachel Rebecca Barrett; Scott Ronald Brodeur; Keith Canada; Tobias Litzenburger; Sanjaya Singh


Archive | 2012

ANTICUERPOS ANTI-CD40

Sanjaya Singh; Tobias Litzenburger; Scott Ronald Brodeur; Canada Keith A; Rachel Rebecca Barrett


Archive | 2011

Anticorps anti-cd40

Rachel Rebecca Barrett; Scott Ronald Brodeur; Keith Canada; Tobias Litzenburger; Sanjaya Singh

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Qi Pan

Boehringer Ingelheim

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