| Literature DB >> 34944110 |
Sophie Gohy1,2,3, Alexandra Moeremans1, Charles Pilette1,2, Amandine Collin2.
Abstract
The respiratory epithelium represents the first chemical, immune, and physical barrier against inhaled noxious materials, particularly pathogens in cystic fibrosis. Local mucus thickening, altered mucociliary clearance, and reduced pH due to CFTR protein dysfunction favor bacterial overgrowth and excessive inflammation. We aimed in this review to summarize respiratory mucosal alterations within the epithelium and current knowledge on local immunity linked to immunoglobulin A in patients with cystic fibrosis.Entities:
Keywords: cystic fibrosis; immunoglobulin A; mucosal immunity; respiratory epithelium
Mesh:
Substances:
Year: 2021 PMID: 34944110 PMCID: PMC8700636 DOI: 10.3390/cells10123603
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Airway epithelial differentiation is altered in the lungs of patients with severe CF. DAB stainings were performed on lung tissues from CF patients and non-CF controls, fixed in 4% formaldehyde, and embedded in paraffin wax cohort, and identified (A) MUC5AC (0.2 µg/mL—AM50143PU-N OriGene Technologies Inc., Rockville, MD, USA), (B) β-tubulin (1.16 µg/mL—T7941, Sigma-Aldrich, Saint-Louis, MO, USA), (C) vimentin (1 µg/mL—M0725, Dako, Carpinteria, CA, USA), respectively, and followed by detection with peroxidase-linked secondary antibody. (A) Increased MUCAC expression, associated with (B) decreased β-tubulin IV expression, were observed in the respiratory epithelium of a patient with CF, compared to a non-CF control. (C) Increased vimentin expression was noted in the respiratory epithelium of a patient with CF, compared to a non-CF control, as well as thickened basement membrane. Scale bar, 50 µm.
Figure 2Model of epithelial alterations and IgA regulation in CF lung (adapted from [120]). Increased EMT parameters and de-differentiation of the respiratory epithelium are observed in CF (increased goblet and transitional cells and decreased ciliated cells). After ER stress and UPR activation, SC and S-IgA secretion is downregulated. Pa infection modulates this pathway (orange arrows). Pa drives host IL-17 response that stimulates PIGR expression and further increases ER stress and UPR activation. CF, cystic fibrosis; ER, endoplasmic reticulum; UPR, unfolded protein response; EMT, epithelial to mesenchymal transition; pIgR, polymeric immunoglobulin receptor; SC, secretory component; d-IgA, dimeric immunoglobulin; S-IgA, secretory immunoglobulin; Th, T-helper; Pa, Pseudomonas aeruginosa; prog, programming.
Major findings on alteration of the respiratory epithelium and the IgA/pIgR system in CF.
| Findings | Model | Study |
|---|---|---|
| Squamous metaplasia, inflammatory infiltrates, bronchiectasis, mucopurulent plugs | Human autopsies | Bedrossian et al., 1976 [ |
| Decrease of ciliated cells and increase of goblet cells | Lung explants | Burgel et al., 2007 [ |
| Thickening of the reticular basement membrane | Endobronchial biopsies (CF children) | Hilliard et al., 2007 [ |
| Degradation of structural components of the extracellular matrix | Endobronchial biopsies (CF children) | Regamey et al., 2011 [ |
| Increased expression of fibronectin and N-cadherin | IB3 cells (CF bronchial cell line) | Nyabam et al., 2016 [ |
| Decreased ciliated and goblet cells numbers | Lung explants, air–liquid interface human lower airway culture, C57BL/6N mice and F508del mice | Collin et al., 2021 [ |
| CFTR modulators reverse EMT process | Lung explants, primary human bronchial cells and cell lines (CFBE41o-) | Quaresma et al., 2020 [ |
| Altered epithelial differentiation (less basal cells, more cells transitioning to ciliated and secretory cells) | Lung explants, air–liquid interface human lower airway culture | Carraro et al., 2021 [ |
| Exaggerated inflammatory response (basal dysregulated production of IL-8) | Primary nasal epithelial culture | Carrabino et al., 2006 [ |
| Exaggerated inflammatory response | Sputum and BAL (CF children) | Osika et al., 1999 [ |
| Reduced periciliary liquid volume | Primary airway epithelial cultures from humans, pigs and mice | Matsui et al., [ |
| Innate antiviral defense altered in CF (human parainfluenza 3 virus) | A549 and CV-1 cells, primary bronchial epithelial culture | Zheng et al., 2003 [ |
| Innate antiviral/bacterial defense altered in CF (rhinovirus, | Air–liquid interface human lower airway culture (CF children) | Ling et al., 2020 [ |
| Increased IgA concentration | Serum | Hodson et al., 1988 [ |
| Increased free SC | Sputum | Marshall et al., 2004 [ |
| Increased specific anti- | Serum | Schiotz et al., 1979 [ |
| Decreased IgA secretion | Saliva | Oh et al., 2018 [ |
| F508del mice | Collin et al., 2020 [ | |
| Increased Th17 inflammation | Buffy coat, F508del mice. | Kushwah et al., 2013 [ |