B4GALT1 as a New Biomarker of Idiopathic Pulmonary Fibrosis.
Claudia De VitisMichela D'AscanioAndrea SacconiDario PizzirussoValentina SalvatiMassimiliano ManciniGiorgia ScafettaRoberto CirombellaFrancesca AscenziSara BruschiniAntonella EspositoSilvia CastelliClaudia SalvucciLeonardo TeodonioBruno SposatoAngiolina CatizioneArianna Di NapoliAndrea VecchioneGennaro CilibertoSalvatore SciacchitanoAlberto RicciRita ManciniPublished in: International journal of molecular sciences (2022)
Idiopathic pulmonary fibrosis (IPF) is a disease characterized by progressive scarring of the lung that involves the pulmonary interstitium. The disease may rapidly progress, leading to respiratory failure, and the long-term survival is poor. There are no accurate biomarkers available so far. Our aim was to evaluate the expression of the B4GALT1 in patients with IPF. Analysis of B4GALT1 gene expression was performed in silico on two gene sets, retrieved from the Gene Expression Omnibus database. Expression of B4GALT1 was then evaluated, both at the mRNA and protein levels, on lung specimens obtained from lung biopsies of 4 IPF patients, on one IPF-derived human primary cell and on 11 cases of IPF associated with cancer. In silico re-analysis demonstrated that the B4GALT1 gene was overexpressed in patients and human cell cultures with IPF ( p = 0.03). Network analysis demonstrated that B4GALT1 upregulation was correlated with genes belonging to the EMT pathway ( p = 0.01). The overexpression of B4GALT1 was observed, both at mRNA and protein levels, in lung biopsies of our four IPF patients and in the IPF-derived human primary cell, in other fibrotic non-lung tissues, and in IPF associated with cancer. In conclusion, our results indicate that B4GALT1 is overexpressed in IPF and could represent a novel marker of this disease.
Keyphrases
- idiopathic pulmonary fibrosis
- gene expression
- interstitial lung disease
- end stage renal disease
- newly diagnosed
- endothelial cells
- chronic kidney disease
- ejection fraction
- poor prognosis
- single cell
- network analysis
- prognostic factors
- genome wide
- pulmonary hypertension
- cell therapy
- peritoneal dialysis
- cell proliferation
- emergency department
- induced pluripotent stem cells
- intensive care unit
- papillary thyroid
- copy number
- mass spectrometry
- patient reported outcomes
- young adults
- pluripotent stem cells
- amino acid
- signaling pathway
- respiratory failure
- squamous cell
- mesenchymal stem cells
- protein protein
- lymph node metastasis