Tezepelumab decreases airway epithelial IL‐33 and T2‐inflammation in response to viral stimulation in patients with asthma

Author:

Sverrild A.1,Cerps S.2ORCID,Nieto‐Fontarigo J. J.234,Ramu S.2,Hvidtfeldt M.1,Menzel M.2ORCID,Kearley J.5,Griffiths J. M.6,Parnes J. R.7,Porsbjerg C.1ORCID,Uller L.2ORCID

Affiliation:

1. Department of Respiratory Medicine University Hospital Bispebjerg Copenhagen Denmark

2. Department of Experimental Medicine Lund University Lund Sweden

3. BioLympho Research group, Department of Biochemistry and Molecular Biology, Faculty of Biology‐Biological Research Centre (CIBUS) Universidade de Santiago de Compostela Santiago de Compostela Spain

4. Translational Research in Airway Diseases Group (TRIAD) Health Research Institute of Santiago de Compostela (IDIS) Santiago de Compostela Spain

5. Bioscience, Research & Early Development, Respiratory & Immunology BioPharmaceuticals R&D, AstraZeneca Gaithersburg Maryland USA

6. Translational Science and Experimental Medicine, Research & Early Development, Respiratory & Immunology BioPharmaceuticals R&D, AstraZeneca Gaithersburg Maryland USA

7. Translational Medicine, Amgen Thousand Oaks California USA

Abstract

AbstractBackgroundRespiratory virus infections are main triggers of asthma exacerbations. Tezepelumab, an anti‐TSLP mAb, reduces exacerbations in patients with asthma, but the effect of blocking TSLP on host epithelial resistance and tolerance to virus infection is not known.AimTo examine effects of blocking TSLP in patients with asthma on host resistance (IFNβ, IFNλ, and viral load) and on the airway epithelial inflammatory response to viral challenge.MethodsBronchoalveolar lavage fluid (BALF, n = 39) and bronchial epithelial cells (BECs) were obtained from patients with uncontrolled asthma before and after 12 weeks of tezepelumab treatment (n = 13) or placebo (n = 13). BECs were cultured in vitro and exposed to the viral infection mimic poly(I:C) or infected by rhinovirus (RV). Alarmins, T2‐ and pro‐inflammatory cytokines, IFNβ IFNλ, and viral load were analyzed by RT‐qPCR and multiplex ELISA before and after stimulation.ResultsIL‐33 expression in unstimulated BECs and IL‐33 protein levels in BALF were reduced after 12 weeks of tezepelumab. Further, IL‐33 gene and protein levels decreased in BECs challenged with poly(I:C) after tezepelumab whereas TSLP gene expression remained unaffected. Poly(I:C)‐induced IL‐4, IL‐13, and IL‐17A release from BECs was also reduced with tezepelumab whereas IFNβ and IFNλ expression and viral load were unchanged.ConclusionBlocking TSLP with tezepelumab in vivo in asthma reduced the airway epithelial inflammatory response including IL‐33 and T2 cytokines to viral challenge without affecting anti‐viral host resistance. Our results suggest that blocking TSLP stabilizes the bronchial epithelial immune response to respiratory viruses.

Funder

Lundbeckfonden

Medicinska Forskningsrådet

Publisher

Wiley

Subject

Immunology,Immunology and Allergy

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