Rahman, M.* ; Irmler, M. ; Keshavan, S.* ; Introna, M.* ; Beckers, J. ; Palmberg, L.* ; Johanson, G.* ; Ganguly, K.* ; Upadhyay, S.*
     
 
    
        
Differential effect of SARS-CoV-2 spike glycoprotein 1 on human bronchial and alveolar lung mucosa models: Implications for pathogenicity.
    
    
        
    
    
        
        Viruses 13:2537 (2021)
    
    
    
		
		
			
				BACKGROUND: The SARS-CoV-2 spike protein mediates attachment of the virus to the host cell receptor and fusion between the virus and the cell membrane. The S1 subunit of the spike glycoprotein (S1 protein) contains the angiotensin converting enzyme 2 (ACE2) receptor binding domain. The SARS-CoV-2 variants of concern contain mutations in the S1 subunit. The spike protein is the primary target of neutralizing antibodies generated following infection, and constitutes the viral component of mRNA-based COVID-19 vaccines. METHODS: Therefore, in this work we assessed the effect of exposure (24 h) to 10 nM SARS-CoV-2 recombinant S1 protein on physiologically relevant human bronchial (bro) and alveolar (alv) lung mucosa models cultured at air-liquid interface (ALI) (n = 6 per exposure condition). Corresponding sham exposed samples served as a control. The bro-ALI model was developed using primary bronchial epithelial cells and the alv-ALI model using representative type II pneumocytes (NCI-H441). RESULTS: Exposure to S1 protein induced the surface expression of ACE2, toll like receptor (TLR) 2, and TLR4 in both bro-ALI and alv-ALI models. Transcript expression analysis identified 117 (bro-ALI) and 97 (alv-ALI) differentially regulated genes (p ≤ 0.01). Pathway analysis revealed enrichment of canonical pathways such as interferon (IFN) signaling, influenza, coronavirus, and anti-viral response in the bro-ALI. Secreted levels of interleukin (IL) 4 and IL12 were significantly (p < 0.05) increased, whereas IL6 decreased in the bro-ALI. In the case of alv-ALI, enriched terms involving p53, APRIL (a proliferation-inducing ligand) tight junction, integrin kinase, and IL1 signaling were identified. These terms are associated with lung fibrosis. Further, significantly (p < 0.05) increased levels of secreted pro-inflammatory cytokines IFNγ, IL1ꞵ, IL2, IL4, IL6, IL8, IL10, IL13, and tumor necrosis factor alpha were detected in alv-ALI, whereas IL12 was decreased. Altered levels of these cytokines are also associated with lung fibrotic response. CONCLUSIONS: In conclusion, we observed a typical anti-viral response in the bronchial model and a pro-fibrotic response in the alveolar model. The bro-ALI and alv-ALI models may serve as an easy and robust platform for assessing the pathogenicity of SARS-CoV-2 variants of concern at different lung regions.
			
			
				
			
		 
		
			
				
					
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        Publikationstyp
        Artikel: Journalartikel
    
 
    
        Dokumenttyp
        Wissenschaftlicher Artikel
    
 
    
        Typ der Hochschulschrift
        
    
 
    
        Herausgeber
        
    
    
        Schlagwörter
        Covid-19 ; Mers (middle East Respiratory Syndrome) ; Sars (severe Acute Respiratory Syndrome) ; Sars-cov-2 ; Coronavirus ; Fibrosis ; Lung ; Pulmonary ; Spike Protein; Idiopathic Pulmonary-fibrosis; Fibroblasts; Expression; Interleukin-4; Inflammation; Macrophages; Receptor; Release; Disease; Il-13
    
 
    
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        Sprache
        englisch
    
 
    
        Veröffentlichungsjahr
        2021
    
 
    
        Prepublished im Jahr 
        
    
 
    
        HGF-Berichtsjahr
        2021
    
 
    
    
        ISSN (print) / ISBN
        1999-4915
    
 
    
        e-ISSN
        1999-4915
    
 
    
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	    Band: 13,  
	    Heft: 12,  
	    Seiten: ,  
	    Artikelnummer: 2537 
	    Supplement: ,  
	
    
 
  
        
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            Verlag
            MDPI
        
 
        
            Verlagsort
            St Alban-anlage 66, Ch-4052 Basel, Switzerland
        
 
	
        
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        Begutachtungsstatus
        Peer reviewed
    
 
     
    
        POF Topic(s)
        30201 - Metabolic Health
    
 
    
        Forschungsfeld(er)
        Genetics and Epidemiology
    
 
    
        PSP-Element(e)
        G-500600-004
    
 
    
        Förderungen
        Swedish Heart Lung Foundation
IMM strategic grant
Swedish Research Council
    
 
    
        Copyright
        
    
 	
    
    
    
    
    
        Erfassungsdatum
        2022-01-10