Adalimumab for prevention of uveitic flare in patients with inactive non-infectious uveitis controlled by corticosteroids (VISUAL II): a multicentre, double-masked, randomised, placebo-controlled phase 3 trial

Summary Background Non-infectious uveitis is a potentially sight-threatening ocular disorder caused by chronic inflammation and its complications. Therapeutic success is limited by systemic adverse effects associated with long-term corticosteroid and immunomodulator use if topical medication is not...

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Veröffentlicht in:The Lancet (British edition) 2016-09, Vol.388 (10050), p.1183-1192
Hauptverfasser: Nguyen, Quan Dong, Prof Dr, Merrill, Pauline T, MD, Jaffe, Glenn J, Prof, Dick, Andrew D, Prof, Kurup, Shree Kumar, Prof, Sheppard, John, MD, Schlaen, Ariel, MD, Pavesio, Carlos, MD, Cimino, Luca, MD, Van Calster, Joachim, MD, Camez, Anne A, MD, Kwatra, Nisha V, PhD, Song, Alexandra P, MD, Kron, Martina, Prof, Tari, Samir, MD, Brézin, Antoine P, Prof
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Zusammenfassung:Summary Background Non-infectious uveitis is a potentially sight-threatening ocular disorder caused by chronic inflammation and its complications. Therapeutic success is limited by systemic adverse effects associated with long-term corticosteroid and immunomodulator use if topical medication is not sufficient to control the inflammation. We aimed to assess the efficacy and safety of adalimumab in patients with inactive, non-infectious uveitis controlled by systemic corticosteroids. Methods We did this multicentre, double-masked, randomised, placebo-controlled phase 3 trial at 62 study sites in 21 countries in the USA, Canada, Europe, Israel, Australia, and Latin America. Patients (aged ≥18 years) with inactive, non-infectious intermediate, posterior, or panuveitic uveitis controlled by 10–35 mg/day of prednisone were randomly assigned (1:1), via an interactive voice and web response system with a block size of four, to receive either subcutaneous adalimumab (loading dose 80 mg; biweekly dose 40 mg) or placebo, with a mandatory prednisone taper from week 2. Randomisation was stratified by baseline immunosuppressant treatment. Sponsor personnel with direct oversight of the conduct and management of the study, investigators, study site personnel, and patients were masked to treatment allocation. The primary efficacy endpoint was time to treatment failure, a multicomponent endpoint encompassing new active inflammatory chorioretinal or inflammatory retinal vascular lesions, anterior chamber cell grade, vitreous haze grade, and visual acuity. Analysis was done in the intention-to-treat population. This trial is registered with ClinicalTrials.gov , number NCT01124838. Findings Between Aug 10, 2010, and May 14, 2015, we randomly assigned 229 patients to receive placebo (n=114) or adalimumab (n=115); 226 patients comprised the intention-to-treat population. Median follow-up time was 155 days (IQR 77–357) in the placebo group and 245 days (119–564) in the adalimumab group. Treatment failure occurred in 61 (55%) of 111 patients in the placebo group compared with 45 (39%) of 115 patients in the adalimumab group. Time to treatment failure was significantly improved in the adalimumab group compared with the placebo group (median not estimated [>18 months] vs 8·3 months; hazard ratio 0·57, 95% CI 0·39–0·84; p=0·004). The 40th percentile for time to treatment failure was 4·8 months in the placebo group and 10·2 months in the adalimumab group. No patients in either group h
ISSN:0140-6736
1474-547X
DOI:10.1016/S0140-6736(16)31339-3