Mucoadhesive recombinant human catalase for dry eye disease: From protein engineering to first-in-human study
- Journal
- Med (New York, N.Y.) (Q1)
- Published
- 18 September 2026
- Study design
- Randomized controlled trial
- Evidence level
- Level 1, High (CEBM 1b)
- Authors
- Ming Shao, Yiteng Lu, Wenjie Xie, Annan Lu, Yutong Jiang, Xiaojing Chen, et al.
- PMID
- 42759503
- DOI
- 10.1016/j.medj.2026.101298
Why clinicians should know about it
- Picked for Ophthalmology (top studies of the week, 20 September 2026): High-quality evidence in a top journal
Abstract
BACKGROUND: Oxidative stress caused by excess reactive oxygen species (ROS) plays a key role in the progression of dry eye disease (DED), yet no approved DED therapy directly eliminates ROS. Here, we develop an antioxidant biologic with enhanced ocular-surface retention by thiol engineering of recombinant human catalase (hCAT) as a new ROS-scavenging eye drop therapy for DED. METHODS: Thiolated hCAT (hCAT-SH) was characterized for activity, stability, mucin interaction, and ocular retention. Efficacy, mechanism, and safety were evaluated in mouse, rabbit, and rat studies, followed by a randomized, double-blind, placebo-controlled first-in-human trial in 30 patients with DED. FINDINGS: With formulation optimization, hCAT-SH maintained enzymatic activity and formulation stability, while exhibiting enhanced mucin binding and prolonged corneal retention. In mouse DED models, hCAT-SH reduced oxidative stress, accelerated epithelial repair, restored tear secretion, and modulated inflammatory and barrier-repair pathways distinct from cyclosporine. In rabbits, exposure remained predominantly ocular with favorable repeated-dose tolerability. Clinically, 0.1 mg/mL hCAT-SH significantly improved corneal fluorescein staining, reduced tear cytokine levels and corneal dendritic cell density versus placebo, and raised no treatment-related safety concerns. CONCLUSIONS: hCAT-SH is a carrier-free, long-retained H2O2-scavenging biologic, with integrated preclinical and first-in-human evidence supporting further development as a new DED drug. FUNDING: National Natural Science Foundation of China; National Technology Innovation Center for Biopharmaceuticals; Jiangsu Key R&D Program; National Key R&D Program of China; Shanghai "Dawn" Program; Shanghai Science and Technology Innovation Action Plans; Shanghai Municipal Commission of Health; Shanghai High-Quality Development Plan for Science and Technology Industry; and Macao FDCT.
Abstract as published, via PubMed.
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