Anti-CELA1 antibody KF4 prevents emphysema by inhibiting stretch-mediated remodeling

抗 CELA1 抗体 KF4 通过抑制拉伸介导的重塑来预防肺气肿

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作者:Mohit Ojha, Noah J Smith, Andrew J Devine, Rashika Joshi, Emily M Goodman, Qiang Fan, Richard Schuman, Aleksey Porollo, J Michael Wells, Ekta Tiwary, Matthew R Batie, Jerilyn Gray, Hitesh Deshmukh, Michael T Borchers, Samuel A Ammerman, Brian M Varisco

Abstract

There are no therapies to prevent emphysema progression. Chymotrypsin-like elastase 1 (CELA1) is a serine protease that binds and cleaves lung elastin in a stretch-dependent manner and is required for emphysema in a murine antisense oligonucleotide model of α-1 antitrypsin (AAT) deficiency. This study tested whether CELA1 is important in strain-mediated lung matrix destruction in non-AAT-deficient emphysema and the efficacy of CELA1 neutralization. Airspace simplification was quantified after administration of tracheal porcine pancreatic elastase (PPE), after 8 months of cigarette smoke (CS) exposure, and in aging. In all 3 models, Cela1-/- mice had less emphysema and preserved lung elastin despite increased lung immune cells. A CELA1-neutralizing antibody was developed (KF4), and it inhibited stretch-inducible lung elastase in ex vivo mouse and human lung and immunoprecipitated CELA1 from human lung. In mice, systemically administered KF4 penetrated lung tissue in a dose-dependent manner and 5 mg/kg weekly prevented emphysema in the PPE model with both pre- and postinjury initiation and in the CS model. KF4 did not increase lung immune cells. CELA1-mediated lung matrix remodeling in response to strain is an important contributor to postnatal airspace simplification, and we believe that KF4 could be developed as a lung matrix-stabilizing therapy in emphysema.

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