Skip to main content
Top
Published in: Arthritis Research & Therapy 1/2015

Open Access 01-12-2015 | Research article

Treatment of systemic lupus erythematosus patients with the BAFF antagonist “peptibody” blisibimod (AMG 623/A-623): results from randomized, double-blind phase 1a and phase 1b trials

Authors: William Stohl, Joan T. Merrill, R. John Looney, Jill Buyon, Daniel J. Wallace, Michael H. Weisman, Ellen M. Ginzler, Blaire Cooke, Donna Holloway, Arunan Kaliyaperumal, Kameswara Rao Kuchimanchi, Tsui Chern Cheah, Erik Rasmussen, John Ferbas, Shelley S. Belouski, Wayne Tsuji, Debra J. Zack

Published in: Arthritis Research & Therapy | Issue 1/2015

Login to get access

Abstract

Introduction

Blisibimod is a potent B cell-activating factor (BAFF) antagonist that binds to both cell membrane-expressed and soluble BAFF. The goal of these first-in-human studies was to characterize the safety, tolerability, and pharmacokinetic and pharmacodynamic profiles of blisibimod in subjects with systemic lupus erythematosus (SLE).

Methods

SLE subjects with mild disease that was stable/inactive at baseline received either a single dose of blisibimod (0.1, 0.3, 1, or 3 mg/kg subcutaneous [SC] or 1, 3, or 6 mg/kg intravenous [IV]) or placebo (phase 1a; N = 54), or four weekly doses of blisibimod (0.3, 1, or 3 mg/kg SC or 6 mg/kg IV) or placebo (phase 1b; N = 63). Safety and tolerability measures were collected, and B cell subset measurements and pharmacokinetic analyses were performed.

Results

All subjects (93 % female; mean age 43.7 years) carried the diagnosis of SLE for ≥ 1 year. Single- and multiple-dose treatment with blisibimod produced a decrease in the number of naïve B cells (24–76 %) and a transient relative increase in the memory B cell compartment, with the greatest effect on IgD-CD27+; there were no notable changes in T cells or natural killer cells. With time, memory B cells reverted to baseline, leading to a calculated 30 % reduction in total B cells by approximately 160 days after the first dose. In both the single- and multiple-dosing SC cohorts, the pharmacokinetic profile indicated slow absorption, dose-proportional exposure from 0.3 through 3.0 mg/kg SC and 1 through 6 mg/kg IV, linear pharmacokinetics across the dose range of 1.0–6.0 mg/kg, and accumulation ratios ranging from 2.21 to 2.76. The relative increase in memory B cells was not associated with safety signals, and the incidence of adverse events, anti-blisibimod antibodies, and clinical laboratory abnormalities were comparable between blisibimod- and placebo-treated subjects.

Conclusions

Blisibimod changed the constituency of the B cell pool and single and multiple doses of blisibimod exhibited approximate dose-proportional pharmacokinetics across the dose range 1.0–6.0 mg/kg. The safety and tolerability profile of blisibimod in SLE was comparable with that of placebo. These findings support further studies of blisibimod in SLE and other B cell-mediated diseases.

Trial registration

Clinicaltrials.​gov NCT02443506. Registered 11 May 2015. NCT02411136 Registered 7 April 2015.
Literature
1.
go back to reference Thompson J, Schneider P, Kalled S, Wang L, Lefevre E, Cachero T, et al. BAFF binds to the tumor necrosis factor receptor-like molecule B cell maturation antigen and is important for maintaining the peripheral B cell population. J Exp Med. 2000;192:129–35.PubMedCentralCrossRefPubMed Thompson J, Schneider P, Kalled S, Wang L, Lefevre E, Cachero T, et al. BAFF binds to the tumor necrosis factor receptor-like molecule B cell maturation antigen and is important for maintaining the peripheral B cell population. J Exp Med. 2000;192:129–35.PubMedCentralCrossRefPubMed
2.
go back to reference Do R, Hatada E, Lee H, Tourigny M, Hilbert D, Chen-Kiang S. Attenuation of apoptosis underlies B lymphocyte stimulator enhancement of humoral immune response. J Exp Med. 2000;192:953–64.PubMedCentralCrossRefPubMed Do R, Hatada E, Lee H, Tourigny M, Hilbert D, Chen-Kiang S. Attenuation of apoptosis underlies B lymphocyte stimulator enhancement of humoral immune response. J Exp Med. 2000;192:953–64.PubMedCentralCrossRefPubMed
3.
go back to reference Batten M, Groom J, Cachero T, Qian F, Schneider P, Tschopp J, et al. BAFF mediates survival of peripheral immature B lymphocytes. J Exp Med. 2000;192:1453–66.PubMedCentralCrossRefPubMed Batten M, Groom J, Cachero T, Qian F, Schneider P, Tschopp J, et al. BAFF mediates survival of peripheral immature B lymphocytes. J Exp Med. 2000;192:1453–66.PubMedCentralCrossRefPubMed
4.
go back to reference Gross J, Dillon S, Mudri S, Johnston J, Littau A, Roque R, et al. TACI-Ig neutralizes molecules critical for B cell development and autoimmune disease impaired B cell maturation in mice lacking BLyS. Immunity. 2001;15:289–302.CrossRefPubMed Gross J, Dillon S, Mudri S, Johnston J, Littau A, Roque R, et al. TACI-Ig neutralizes molecules critical for B cell development and autoimmune disease impaired B cell maturation in mice lacking BLyS. Immunity. 2001;15:289–302.CrossRefPubMed
5.
go back to reference Schiemann B, Gommerman J, Vora K, Cachero T, Shulga-Morskaya S, Dobles M, et al. An essential role for BAFF in the normal development of B cells through a BCMA-independent pathway. Science. 2001;293:2111–4.CrossRefPubMed Schiemann B, Gommerman J, Vora K, Cachero T, Shulga-Morskaya S, Dobles M, et al. An essential role for BAFF in the normal development of B cells through a BCMA-independent pathway. Science. 2001;293:2111–4.CrossRefPubMed
6.
go back to reference Mackay F, Woodcock S, Lawton P, Ambrose C, Baetscher M, Schneider P, et al. Mice transgenic for BAFF develop lymphocytic disorders along with autoimmune manifestations. J Exp Med. 1999;190:1697–710.PubMedCentralCrossRefPubMed Mackay F, Woodcock S, Lawton P, Ambrose C, Baetscher M, Schneider P, et al. Mice transgenic for BAFF develop lymphocytic disorders along with autoimmune manifestations. J Exp Med. 1999;190:1697–710.PubMedCentralCrossRefPubMed
7.
go back to reference Khare S, Sarosi I, Xia X, McCabe S, Minder K, Solovyev I, et al. Severe B cell hyperplasia and autoimmune disease in TALL-1 transgenic mice. PNAS. 2000;97:3370–5.PubMedCentralCrossRefPubMed Khare S, Sarosi I, Xia X, McCabe S, Minder K, Solovyev I, et al. Severe B cell hyperplasia and autoimmune disease in TALL-1 transgenic mice. PNAS. 2000;97:3370–5.PubMedCentralCrossRefPubMed
8.
go back to reference Gross J, Johnston J, Mudri S, Enselman R, Dillon S, Madden K, et al. TACI and BCMA are receptors for a TNF homologue implicated in B-cell autoimmune disease. Nature. 2000;404:995–9.CrossRefPubMed Gross J, Johnston J, Mudri S, Enselman R, Dillon S, Madden K, et al. TACI and BCMA are receptors for a TNF homologue implicated in B-cell autoimmune disease. Nature. 2000;404:995–9.CrossRefPubMed
9.
go back to reference Stohl W, Xu D, Kim K, Koss M, Jorgensen T, Deocharan B, et al. BAFF overexpression and accelerated glomerular disease in mice with incomplete genetic predisposition to systemic lupus erythematosus. Arthritis Rheum. 2005;52:2080–91.CrossRefPubMed Stohl W, Xu D, Kim K, Koss M, Jorgensen T, Deocharan B, et al. BAFF overexpression and accelerated glomerular disease in mice with incomplete genetic predisposition to systemic lupus erythematosus. Arthritis Rheum. 2005;52:2080–91.CrossRefPubMed
10.
go back to reference Groom J, Fletcher C, Walters S, Grey S, Watt S, Sweet M, et al. BAFF and MyD88 signals promote a lupus-like disease independent of T cells. J Exp Med. 2007;204:1959–71.PubMedCentralCrossRefPubMed Groom J, Fletcher C, Walters S, Grey S, Watt S, Sweet M, et al. BAFF and MyD88 signals promote a lupus-like disease independent of T cells. J Exp Med. 2007;204:1959–71.PubMedCentralCrossRefPubMed
11.
go back to reference Kayagaki N, Yan M, Seshasayee D, Wang H, Lee W, French D, et al. BAFF/BLyS receptor 3 binds the B cell survival factor BAFF ligand through a discrete surface loop and promotes processing of NF-kappaB2. Immunity. 2002;17:515–24.CrossRefPubMed Kayagaki N, Yan M, Seshasayee D, Wang H, Lee W, French D, et al. BAFF/BLyS receptor 3 binds the B cell survival factor BAFF ligand through a discrete surface loop and promotes processing of NF-kappaB2. Immunity. 2002;17:515–24.CrossRefPubMed
12.
go back to reference Ramanujam M, Wang X, Huang W, Liu Z, Schiffer L, Tao H, et al. Similarities and differences between selective and nonselective BAFF blockade in murine SLE. J Clin Invest. 2006;116:724–34.PubMedCentralCrossRefPubMed Ramanujam M, Wang X, Huang W, Liu Z, Schiffer L, Tao H, et al. Similarities and differences between selective and nonselective BAFF blockade in murine SLE. J Clin Invest. 2006;116:724–34.PubMedCentralCrossRefPubMed
13.
go back to reference Jacob C, Pricop L, Putterman C, Koss M, Liu Y, Kollaros M, et al. Paucity of clinical disease despite serological autoimmunity and kidney pathology in lupus-prone New Zealand mixed 2328 mice deficient in BAFF. J Immunol. 2006;177:2671–80.PubMedCentralCrossRefPubMed Jacob C, Pricop L, Putterman C, Koss M, Liu Y, Kollaros M, et al. Paucity of clinical disease despite serological autoimmunity and kidney pathology in lupus-prone New Zealand mixed 2328 mice deficient in BAFF. J Immunol. 2006;177:2671–80.PubMedCentralCrossRefPubMed
14.
go back to reference Zhang J, Roschke V, Baker K, Wang Z, Alarcón G, Fessler B, et al. Cutting edge: a role for B lymphocyte stimulator in systemic lupus erythematosus. J Immunol. 2001;166:6–10.CrossRefPubMed Zhang J, Roschke V, Baker K, Wang Z, Alarcón G, Fessler B, et al. Cutting edge: a role for B lymphocyte stimulator in systemic lupus erythematosus. J Immunol. 2001;166:6–10.CrossRefPubMed
15.
go back to reference Cheema G, Roschke V, Hilbert D, Stohl W. Elevated serum B lymphocyte stimulator levels in patients with systemic immune-based rheumatic diseases. Arthritis Rheum. 2001;44:1313–9.CrossRefPubMed Cheema G, Roschke V, Hilbert D, Stohl W. Elevated serum B lymphocyte stimulator levels in patients with systemic immune-based rheumatic diseases. Arthritis Rheum. 2001;44:1313–9.CrossRefPubMed
16.
go back to reference Stohl W, Metyas S, Tan S, Cheema G, Oamar B, Xu D, et al. B lymphocyte stimulator overexpression in patients with systemic lupus erythematosus: longitudinal observations. Arthritis Rheum. 2003;48:3475–86.CrossRefPubMed Stohl W, Metyas S, Tan S, Cheema G, Oamar B, Xu D, et al. B lymphocyte stimulator overexpression in patients with systemic lupus erythematosus: longitudinal observations. Arthritis Rheum. 2003;48:3475–86.CrossRefPubMed
17.
go back to reference Petri M, Stohl W, Chatham W, McCune W, Chevrier M, Ryel J, et al. Association of plasma B lymphocyte stimulator levels and disease activity in systemic lupus erythematosus. Arthritis Rheum. 2008;58:2453–9.CrossRefPubMed Petri M, Stohl W, Chatham W, McCune W, Chevrier M, Ryel J, et al. Association of plasma B lymphocyte stimulator levels and disease activity in systemic lupus erythematosus. Arthritis Rheum. 2008;58:2453–9.CrossRefPubMed
18.
go back to reference Collins C, Gavin A, Migone T, Hilbert D, Nemazee D, Stohl W. B lymphocyte stimulator (BLyS) isoforms in systemic lupus erythematosus: disease activity correlates better with blood leukocyte BLyS mRNA levels than with plasma BLyS protein levels. Arthritis Res Ther. 2006;8:R6.PubMedCentralCrossRefPubMed Collins C, Gavin A, Migone T, Hilbert D, Nemazee D, Stohl W. B lymphocyte stimulator (BLyS) isoforms in systemic lupus erythematosus: disease activity correlates better with blood leukocyte BLyS mRNA levels than with plasma BLyS protein levels. Arthritis Res Ther. 2006;8:R6.PubMedCentralCrossRefPubMed
19.
go back to reference Becker-Merok A, Nikolaisen C, Nossent H. B-lymphocyte activating factor in systemic lupus erythematosus and rheumatoid arthritis in relation to autoantibody levels, disease measures and time. Lupus. 2006;15:570–6.CrossRefPubMed Becker-Merok A, Nikolaisen C, Nossent H. B-lymphocyte activating factor in systemic lupus erythematosus and rheumatoid arthritis in relation to autoantibody levels, disease measures and time. Lupus. 2006;15:570–6.CrossRefPubMed
20.
go back to reference Ju S, Zhang D, Wang Y, Ni H, Kong X, Zhong R. Correlation of the expression levels of BLyS and its receptors mRNA in patients with systemic lupus erythematosus. Clin Biochem. 2006;39:1131–7.CrossRefPubMed Ju S, Zhang D, Wang Y, Ni H, Kong X, Zhong R. Correlation of the expression levels of BLyS and its receptors mRNA in patients with systemic lupus erythematosus. Clin Biochem. 2006;39:1131–7.CrossRefPubMed
21.
go back to reference Hong S, Reiff A, Yang H, Migone T, Ward C, Marzan K, et al. B lymphocyte stimulator expression in pediatric systemic lupus erythematosus and juvenile idiopathic arthritis patients. Arthritis Rheum. 2009;60:3400–9.CrossRefPubMed Hong S, Reiff A, Yang H, Migone T, Ward C, Marzan K, et al. B lymphocyte stimulator expression in pediatric systemic lupus erythematosus and juvenile idiopathic arthritis patients. Arthritis Rheum. 2009;60:3400–9.CrossRefPubMed
22.
go back to reference Navarra S, Guzmán R, Gallacher A, Hall S, Levy R, Jimenez R, et al. Efficacy and safety of belimumab in patients with active systemic lupus erythematosus: a randomised, placebo-controlled, phase 3 trial. Lancet. 2011;377:721–31.CrossRefPubMed Navarra S, Guzmán R, Gallacher A, Hall S, Levy R, Jimenez R, et al. Efficacy and safety of belimumab in patients with active systemic lupus erythematosus: a randomised, placebo-controlled, phase 3 trial. Lancet. 2011;377:721–31.CrossRefPubMed
23.
go back to reference Furie R, Petri M, Zamani O, Cervera R, Wallace D, Tegzová D, et al. A phase III, randomized, placebo-controlled study of belimumab, a monoclonal antibody that inhibits B lymphocyte stimulator, in patients with systemic lupus erythematosus. Arthritis Rheum. 2011;63:3918–30.CrossRefPubMed Furie R, Petri M, Zamani O, Cervera R, Wallace D, Tegzová D, et al. A phase III, randomized, placebo-controlled study of belimumab, a monoclonal antibody that inhibits B lymphocyte stimulator, in patients with systemic lupus erythematosus. Arthritis Rheum. 2011;63:3918–30.CrossRefPubMed
24.
go back to reference Hsu H, Khare S, Lee F, Miner K, Hu Y, Stolina M, et al. A novel modality of BAFF-specific inhibitor AMG623 peptibody reduces B-cell number and improves outcomes in murine models of autoimmune disease. Clin Exp Rheumatol. 2012;30:197–201.PubMed Hsu H, Khare S, Lee F, Miner K, Hu Y, Stolina M, et al. A novel modality of BAFF-specific inhibitor AMG623 peptibody reduces B-cell number and improves outcomes in murine models of autoimmune disease. Clin Exp Rheumatol. 2012;30:197–201.PubMed
25.
go back to reference Tan E, Cohen A, Fries J, Masi A, McShane D, Rothfield N, et al. The 1982 revised criteria for the classification of systemic lupus erythematosus. Arthritis Rheum. 1982;25:1271–7.CrossRefPubMed Tan E, Cohen A, Fries J, Masi A, McShane D, Rothfield N, et al. The 1982 revised criteria for the classification of systemic lupus erythematosus. Arthritis Rheum. 1982;25:1271–7.CrossRefPubMed
26.
go back to reference Hochberg M. Updating the American College of Rheumatology revised criteria for the classification of systemic erythematosus lupus. Arthritis Rheum. 1997;40:1725–34.CrossRefPubMed Hochberg M. Updating the American College of Rheumatology revised criteria for the classification of systemic erythematosus lupus. Arthritis Rheum. 1997;40:1725–34.CrossRefPubMed
27.
go back to reference Belouski S, Wallace D, Weisman M, Ishimori M, Hendricks L, Zack D, et al. Sample stability and variability of B-cell subsets in blood from healthy subjects and patients with systemic lupus erythematosus. Cytometry B Clin Cytom. 2010;78:49–58.PubMed Belouski S, Wallace D, Weisman M, Ishimori M, Hendricks L, Zack D, et al. Sample stability and variability of B-cell subsets in blood from healthy subjects and patients with systemic lupus erythematosus. Cytometry B Clin Cytom. 2010;78:49–58.PubMed
28.
29.
go back to reference Dall’Era M, Chakravarty E, Wallace D, Genovese M, Weisman M, Kavanaugh A, et al. Reduced B lymphocyte and immunoglobulin levels after atacicept treatment in patients with systemic lupus erythematosus: results of a multicenter, phase Ib, double-blind, placebo-controlled, dose-escalating trial. Arthritis Rheum. 2007;56:4142–50.CrossRefPubMed Dall’Era M, Chakravarty E, Wallace D, Genovese M, Weisman M, Kavanaugh A, et al. Reduced B lymphocyte and immunoglobulin levels after atacicept treatment in patients with systemic lupus erythematosus: results of a multicenter, phase Ib, double-blind, placebo-controlled, dose-escalating trial. Arthritis Rheum. 2007;56:4142–50.CrossRefPubMed
30.
go back to reference Tak P, Thurlings R, Rossier C, Nestorov I, Dimic A, Mircetic V, et al. Atacicept in patients with rheumatoid arthritis: results of a multicenter, phase Ib, double-blind, placebo-controlled, dose-escalating, single- and repeated-dose study. Arthritis Rheum. 2008;58:61–72.CrossRefPubMed Tak P, Thurlings R, Rossier C, Nestorov I, Dimic A, Mircetic V, et al. Atacicept in patients with rheumatoid arthritis: results of a multicenter, phase Ib, double-blind, placebo-controlled, dose-escalating, single- and repeated-dose study. Arthritis Rheum. 2008;58:61–72.CrossRefPubMed
31.
go back to reference Wallace D, Stohl W, Furie R, Lisse J, McKay J, Merrill J, et al. A phase II, randomized, double-blind, placebo-controlled, dose-ranging study of belimumab in patients with active systemic lupus erythematosus. Arthritis Rheum. 2009;61:1168–78.PubMedCentralCrossRefPubMed Wallace D, Stohl W, Furie R, Lisse J, McKay J, Merrill J, et al. A phase II, randomized, double-blind, placebo-controlled, dose-ranging study of belimumab in patients with active systemic lupus erythematosus. Arthritis Rheum. 2009;61:1168–78.PubMedCentralCrossRefPubMed
32.
go back to reference Stohl W, Hiepe F, Latinis K, Thomas M, Scheinberg M, Clarke A, et al. Belimumab reduces autoantibodies, normalizes low complement levels, and reduces select B cell populations in patients with systemic lupus erythematosus. Arthritis Rheum. 2012;64:2328–37.PubMedCentralCrossRefPubMed Stohl W, Hiepe F, Latinis K, Thomas M, Scheinberg M, Clarke A, et al. Belimumab reduces autoantibodies, normalizes low complement levels, and reduces select B cell populations in patients with systemic lupus erythematosus. Arthritis Rheum. 2012;64:2328–37.PubMedCentralCrossRefPubMed
33.
go back to reference Looney R, Anolik J, Campbell D, Felgar R, Young F, Arend L, et al. B cell depletion as a novel treatment for systemic lupus erythematosus: a phase I/II dose-escalation trial of rituximab. Arthritis Rheum. 2004;50:2580–9.CrossRefPubMed Looney R, Anolik J, Campbell D, Felgar R, Young F, Arend L, et al. B cell depletion as a novel treatment for systemic lupus erythematosus: a phase I/II dose-escalation trial of rituximab. Arthritis Rheum. 2004;50:2580–9.CrossRefPubMed
34.
go back to reference Sato S, Hasegawa M, Fujimoto M, Tedder TF, Takehara K. Quantitative genetic variation in CD19 expression correlates with autoimmunity. J Immunol. 2000;165:6635–43.CrossRefPubMed Sato S, Hasegawa M, Fujimoto M, Tedder TF, Takehara K. Quantitative genetic variation in CD19 expression correlates with autoimmunity. J Immunol. 2000;165:6635–43.CrossRefPubMed
35.
go back to reference Korganow AS, Knapp AM, Nehme-Schuster H, Soulas-Sprauel P, Poindron V, Pasquali JL, et al. Peripheral B cell abnormalities in patients with systemic lupus erythematosus in quiescent phase: decreased memory B cells and membrane CD19 expression. J Autoimmun. 2010;34:426–3.CrossRefPubMed Korganow AS, Knapp AM, Nehme-Schuster H, Soulas-Sprauel P, Poindron V, Pasquali JL, et al. Peripheral B cell abnormalities in patients with systemic lupus erythematosus in quiescent phase: decreased memory B cells and membrane CD19 expression. J Autoimmun. 2010;34:426–3.CrossRefPubMed
36.
go back to reference Merrill JT, Neuwelt CM, Wallace DJ, Shanahan JC, Latinis KM, Oates JC, et al. Efficacy and safety of rituximab in moderately-to-severely active systemic lupus erythematosus: the randomized, double-blind, phase II/III systemic lupus erythematosus evaluation of rituximab trial. Arthritis Rheum. 2008;62:222–33.CrossRef Merrill JT, Neuwelt CM, Wallace DJ, Shanahan JC, Latinis KM, Oates JC, et al. Efficacy and safety of rituximab in moderately-to-severely active systemic lupus erythematosus: the randomized, double-blind, phase II/III systemic lupus erythematosus evaluation of rituximab trial. Arthritis Rheum. 2008;62:222–33.CrossRef
37.
go back to reference Rovin BH, Furie R, Latinis K, Looney RJ, Fervenza FC, Sanchez-Guerrero J, et al. Efficacy and safety of rituximab in patients with active proliferative lupus nephritis: the Lupus Nephritis Assessment with Rituximab study. Arthritis Rheum. 2012;64:1215–26.CrossRefPubMed Rovin BH, Furie R, Latinis K, Looney RJ, Fervenza FC, Sanchez-Guerrero J, et al. Efficacy and safety of rituximab in patients with active proliferative lupus nephritis: the Lupus Nephritis Assessment with Rituximab study. Arthritis Rheum. 2012;64:1215–26.CrossRefPubMed
38.
go back to reference Pena-Rossi C, Nasonov E, Stanislav M, Yakusevich V, Ershova O, Lomareva N, et al. An exploratory dose-escalating study investigating the safety, tolerability, pharmacokinetics and pharmacodynamics of intravenous atacicept in patients with systemic lupus erythematosus. Lupus. 2009;18:547–55.PubMedCentralCrossRefPubMed Pena-Rossi C, Nasonov E, Stanislav M, Yakusevich V, Ershova O, Lomareva N, et al. An exploratory dose-escalating study investigating the safety, tolerability, pharmacokinetics and pharmacodynamics of intravenous atacicept in patients with systemic lupus erythematosus. Lupus. 2009;18:547–55.PubMedCentralCrossRefPubMed
39.
go back to reference Baker KP, Edwards BM, Main SH, Choi GH, Wager RE, Halpern WG, et al. Generation and characterization of LymphoStat-B, a human monoclonal antibody that antagonizes the bioactivities of B lymphocyte stimulator. Arthritis Rheum. 2003;48:3253–65.CrossRefPubMed Baker KP, Edwards BM, Main SH, Choi GH, Wager RE, Halpern WG, et al. Generation and characterization of LymphoStat-B, a human monoclonal antibody that antagonizes the bioactivities of B lymphocyte stimulator. Arthritis Rheum. 2003;48:3253–65.CrossRefPubMed
40.
go back to reference Furie RA, Scheinberg MA, Leon G, Ramiterre EB, Thomas M, Martin RS, et al. A phase 2, randomised, placebo-controlled clinical trial of blisibimod, an inhibitor of B cell activating factor, in patients with moderate-to-severe systemic lupus erythematosus, the PEARL-SC study. Ann Rheum Dis 2014. doi: 10.1136/annrheumdis-2013-205144. Epub ahead of print. Furie RA, Scheinberg MA, Leon G, Ramiterre EB, Thomas M, Martin RS, et al. A phase 2, randomised, placebo-controlled clinical trial of blisibimod, an inhibitor of B cell activating factor, in patients with moderate-to-severe systemic lupus erythematosus, the PEARL-SC study. Ann Rheum Dis 2014. doi: 10.​1136/​annrheumdis-2013-205144. Epub ahead of print.
41.
go back to reference Isenberg DA, Urowitz MB, Merrill JT, Hoffman RW, Linnik MD, Morgan-Cox M, et al. Efficacy and Safety of subcutaneous tabalumab in patients with systemic lupus erythematosus (SLE): Results from 2 phase 3, 52-week, multicenter, randomized, double-blind, placebo-controlled trials. Arthritis Rheum. 2014;66:S225. Isenberg DA, Urowitz MB, Merrill JT, Hoffman RW, Linnik MD, Morgan-Cox M, et al. Efficacy and Safety of subcutaneous tabalumab in patients with systemic lupus erythematosus (SLE): Results from 2 phase 3, 52-week, multicenter, randomized, double-blind, placebo-controlled trials. Arthritis Rheum. 2014;66:S225.
42.
go back to reference Bossen C, Tardivel A, Willen L, Fletcher C, Perroud M, Beermann F, et al. Mutation of the BAFF furin cleavage site impairs B-cell homeostasis and antibody responses. Eur J Immunol. 2011;41:787–97.CrossRefPubMed Bossen C, Tardivel A, Willen L, Fletcher C, Perroud M, Beermann F, et al. Mutation of the BAFF furin cleavage site impairs B-cell homeostasis and antibody responses. Eur J Immunol. 2011;41:787–97.CrossRefPubMed
43.
go back to reference Huard B, Schneider P, Mauri D, Tschopp J, French L. T cell costimulation by the TNF ligand BAFF. J Immunol. 2001;167:6225–31.CrossRefPubMed Huard B, Schneider P, Mauri D, Tschopp J, French L. T cell costimulation by the TNF ligand BAFF. J Immunol. 2001;167:6225–31.CrossRefPubMed
44.
go back to reference Ng L, Sutherland A, Newton R, Qian F, Cachero T, Scott M, et al. B cell-activating factor belonging to the TNF family (BAFF)-R is the principal BAFF receptor facilitating BAFF costimulation of circulating T and B cells. J Immunol. 2004;173:807–17.CrossRefPubMed Ng L, Sutherland A, Newton R, Qian F, Cachero T, Scott M, et al. B cell-activating factor belonging to the TNF family (BAFF)-R is the principal BAFF receptor facilitating BAFF costimulation of circulating T and B cells. J Immunol. 2004;173:807–17.CrossRefPubMed
45.
go back to reference Sutherland A, Ng L, Fletcher C, Shum B, Newton R, Grey S, et al. BAFF augments certain Th1-associated inflammatory responses. J Immunol. 2005;174:5537–44.CrossRefPubMed Sutherland A, Ng L, Fletcher C, Shum B, Newton R, Grey S, et al. BAFF augments certain Th1-associated inflammatory responses. J Immunol. 2005;174:5537–44.CrossRefPubMed
46.
go back to reference Zhou X, Xia Z, Lan Q, Wang J, Su W, Han Y, et al. BAFF promotes Th17 cells and aggravates experimental autoimmune encephalomyelitis. PLoS One. 2011;6, e23629.PubMedCentralCrossRefPubMed Zhou X, Xia Z, Lan Q, Wang J, Su W, Han Y, et al. BAFF promotes Th17 cells and aggravates experimental autoimmune encephalomyelitis. PLoS One. 2011;6, e23629.PubMedCentralCrossRefPubMed
Metadata
Title
Treatment of systemic lupus erythematosus patients with the BAFF antagonist “peptibody” blisibimod (AMG 623/A-623): results from randomized, double-blind phase 1a and phase 1b trials
Authors
William Stohl
Joan T. Merrill
R. John Looney
Jill Buyon
Daniel J. Wallace
Michael H. Weisman
Ellen M. Ginzler
Blaire Cooke
Donna Holloway
Arunan Kaliyaperumal
Kameswara Rao Kuchimanchi
Tsui Chern Cheah
Erik Rasmussen
John Ferbas
Shelley S. Belouski
Wayne Tsuji
Debra J. Zack
Publication date
01-12-2015
Publisher
BioMed Central
Published in
Arthritis Research & Therapy / Issue 1/2015
Electronic ISSN: 1478-6362
DOI
https://doi.org/10.1186/s13075-015-0741-z

Other articles of this Issue 1/2015

Arthritis Research & Therapy 1/2015 Go to the issue