Objectives To evaluate the efficacy and safety of risankizumab, a humanised monoclonal antibody targeting the p19 subunit of interleukin-23 (IL-23), in patients with active ankylosing spondylitis (AS). Methods A total of 159 patients with biological-naïve AS, with active disease (Bath Ankylosing Spondylitis Disease Activity Index score of ≥4), were randomised (1:1:1:1) to risankizumab (18 mg single dose, 90 mg or 180 mg at day 1 and weeks 8, 16 and 24) or placebo over a 24-week blinded period. The primary outcome was a 40% improvement in Assessment in Spondylo Arthritis International Society (ASAS40) at week 12. Safety was assessed in patients who received at least one dose of study drug. Results At week 12, ASAS40 response rates were 25.5%, 20.5% and 15.0% in the 18 mg, 90 mg and 180 mg risankizumab groups, respectively, compared with 17.5% in the placebo group. The estimated difference in proportion between the 180 mg risankizumab and placebo groups (primary endpoint) was –2.5% (95% CI –21.8 to 17.0; p=0.42). Rates of adverse events were similar in all treatment groups. Conclusions Treatment with risankizumab did not meet the study primary endpoint and showed no evidence of clinically meaningful improvements compared with placebo in patients with active AS, suggesting that IL-23 may not be a relevant driver of disease pathogenesis and symptoms in AS. Trial registration number NCT02047110; Pre-results.
Background: IL-23 is associated with plaque psoriasis susceptibility and pathogenesis. BI 655066 is a fully human IgG(1) mAb specific for the IL-23 p19 subunit.Objective: This first-in-human proof-of-concept study evaluated the clinical and biological effects of BI 655066 in patients with moderate-to-severe plaque psoriasis.Methods: We performed a single-rising-dose, multicenter, randomized, double-blind, placebo-controlled, within-dose cohort phase I trial. Patients received 0.01, 0.05, 0.25, 1, 3, or 5 mg/kg BI 655066 intravenously, 0.25 or 1 mg/kg BI 655066 subcutaneously, or matched placebo. The primary objective was safety evaluation.Results: Thirty-nine patients received single-dose BI 655066 intravenously (n = 18) or subcutaneously (n = 13) or placebo (n = 8). Adverse events were reported with similar frequency in the BI 655066 and placebo groups. Four serious adverse events (not considered treatment related) were reported among BI 655066-treated patients. BI 655066 was associated with clinical improvement from week 2 and maintained for up to 66 weeks after treatment. At week 12, 75%, 90%, and 100% decreases in the Psoriasis Area and Severity Index were achieved by 87%, 58%, and 16% of BI 655066-treated patients (any dose), respectively, versus none receiving placebo. BI 655066 treatment resulted in reduced expression of lesional skin genes associated with IL-23/IL-17 signaling pathways and normalization of psoriatic lesion gene expression profiles to a profile approaching that of nonlesional skin. Significant correlation between treatment-associated molecular changes and psoriasis area and severity index improvement was observed (r = 0.73, P = 2 x 10(-6)).Conclusions: BI 655066 was well tolerated and associated with rapid, substantial, and durable clinical improvement in patients with moderate-to-severe psoriasis, supporting a central role for IL-23 in psoriasis pathogenesis.
Objective Uveitis and retinal vasculitis are sight-threatening manifestations of Behçet's disease with limited treatment options. This pilot study aimed to evaluate the safety, pharmacokinetics and clinical activity of XOMA 052 (gevokizumab), a recombinant humanised anti-interleukin 1β antibody, in Behçet's disease patients with uveitis. Methods Patients with acute posterior or panuveitis, and/or retinal vasculitis, resistant to azathioprine and/or ciclosporin, and receiving 10 mg/day or less of prednisolone, were enrolled into the 98-day study. Immunosuppressive agents were discontinued at baseline. Patients received a single infusion of XOMA 052 (0.3 mg/kg). The safety and uveitis status and pharmacokinetics of XOMA 052 were evaluated. Results Seven patients enrolled and completed the study. No treatment-related adverse event was observed. XOMA 052 treatment was associated with rapid and durable clinical response in all patients. Complete resolution of intraocular inflammation was achieved in 4–21 days (median 14 days), with a median duration of response of 49 days (range 21–97 days); one patient remained exacerbation free throughout the study. Conclusions Well tolerated, XOMA 052 resulted in a rapid onset and sustained reduction in intraocular inflammation in patients with resistant uveitis and retinal vasculitis. Moreover, the effect was observed despite discontinuation of immunosuppressive agents and without the need to increase corticosteroid dosages.
OBJECTIVE Metabolic activation of the innate immune system governed by interleukin (IL)-1β contributes to β-cell failure in type 2 diabetes. Gevokizumab is a novel, human-engineered monoclonal anti–IL-1β antibody. We evaluated the safety and biological activity of gevokizumab in patients with type 2 diabetes. RESEARCH DESIGN AND METHODS In a placebo-controlled, dose-escalation study, a total of 98 patients were randomly assigned to placebo (17 subjects) or gevokizumab (81 subjects) at increasing doses and dosing schedules. The primary objective of the study was to evaluate the safety profile of gevokizumab in type 2 diabetes. The secondary objectives were to assess pharmacokinetics for different dose levels, routes of administration, and regimens and to assess biological activity. RESULTS The study drug was well tolerated with no serious adverse events. There was one hypoglycemic event whereupon concomitant insulin treatment had to be reduced. Clearance of gevokizumab was consistent with that for a human IgG2, with a half-life of 22 days. In the combined intermediate-dose group (single doses of 0.03 and 0.1 mg/kg), the mean placebo-corrected decrease in glycated hemoglobin was 0.11, 0.44, and 0.85% after 1, 2 (P = 0.017), and 3 (P = 0.049) months, respectively, along with enhanced C-peptide secretion, increased insulin sensitivity, and a reduction in C-reactive protein and spontaneous and inducible cytokines. CONCLUSIONS This novel IL-1β–neutralizing antibody improved glycemia, possibly via restored insulin production and action, and reduced inflammation in patients with type 2 diabetes. This therapeutic agent may be able to be used on a once-every-month or longer schedule.
Nat. Immunol. 11, 973 (2010); published online 19 October 2010; corrected after print 10 Jan 2011 In the version of this article initially published, the author name Peyman Kelk was inverted. The error has been corrected in the HTML and PDF versions of the article.
Several diseases including microbial infection, rheumatoid arthritis, multiple sclerosis, and cancer have been linked to fatigue. They all have in common an upregulation of cytokines, including interleukin (IL)-1β and tumor necrosis factor-α (TNF-α), which may interfere with clock gene functions (1). Increasing evidence associates type 2 diabetes with inflammatory processes characterized by elevated production of proinflammatory cytokines and infiltration of immune cells. Reducing IL-1 activity in prediabetes and diabetes improves insulin secretion, glycemic control, and markers of systemic inflammation (2–4). Given this background, we hypothesized that fatigue levels may be increased in type 2 diabetes and may be improved by IL-1β antagonism. Within a placebo-controlled, double-blind study of IL-1β antagonism with a monoclonal anti–IL-1β …
Abstract XOMA 052, a Human Engineered™ monoclonal antibody, was developed to the mature form of human IL-1β following selection from multiple phage display libraries. This antibody has a binding constant for human IL-1β of 300 fM. Human blood cultures were used to evaluate the biological effects of this antibody. The cultures were stimulated with TLR ligands. After 24 hours, the cultures were lysed with Triton®-X to extract membrane and intracellular cytokines. XOMA 052 inhibited the production of IL-1β induced by Staphylococcus epidermidis by 50% at 0.1 pM and by 75% at 3 pM; IL-1β induced by LPS was reduced by 75% at 10 pM. At 100 pM, inhibition was 100% whether induced by Staphylococcus epidermidis or LPS. LPS-induced TNFα was reduced by 75% at 100 pM. Interferon-γ (IFNγ) was induced by Staphylococcus epidermidis and by LPS. XOMA 052 reduced IFNγ induced by Staphylococcus epidermidis by 75% at 100 pM and LPS-induced IFNγ by 75% at 100 pM.We conclude that the data from the whole blood cultures are consistent with the high 300 fM affinity of XOMA 052 for IL-1β.