Mitochondrial Dysfunction in Lung Resident Mesenchymal Stem Cells from Idiopathic Pulmonary Fibrosis Patients

Author:

Mercader-Barceló Josep12ORCID,Martín-Medina Aina1,Truyols-Vives Joan2ORCID,Escarrer-Garau Gabriel2ORCID,Elowsson Linda3ORCID,Montes-Worboys Ana4,Río-Bocos Carlos1,Muncunill-Farreny Josep5,Velasco-Roca Julio5,Cederberg Anna3,Kadefors Måns3,Molina-Molina Maria46,Westergren-Thorsson Gunilla3ORCID,Sala-Llinàs Ernest167

Affiliation:

1. iRESPIRE Research Group, Health Research Institute of the Balearic Islands (IdISBa), 07120 Palma, Spain

2. MolONE Research Group, University of the Balearic Islands, 07122 Palma, Spain

3. Lung Biology, Department of Experimental Medical Science, Lund University, 08908 Lund, Sweden

4. ILD Unit, Respiratory Department, University Hospital of Bellvitge-Bellvitge Biomedical Research Institute (IDIBELL), Hospitalet de Llobregat, 08908 Barcelona, Spain

5. Health Research Institute of the Balearic Islands (IdISBa), 07120 Palma, Spain

6. Centre of Biomedical Research Network in Respiratory Diseases (CIBERES), 28029 Madrid, Spain

7. Respiratory Department, Son Espases University Hospital, 07120 Palma, Spain

Abstract

Idiopathic pulmonary fibrosis (IPF) is characterized by an aberrant repair response with uncontrolled turnover of extracellular matrix involving mesenchymal cell phenotypes, where lung resident mesenchymal stem cells (LRMSC) have been supposed to have an important role. However, the contribution of LRMSC in lung fibrosis is not fully understood, and the role of LRMSC in IPF remains to be elucidated. Here, we performed transcriptomic and functional analyses on LRMSC isolated from IPF and control patients (CON). Both over-representation and gene set enrichment analyses indicated that oxidative phosphorylation is the major dysregulated pathway in IPF LRMSC. The most relevant differences in biological processes included complement activation, mesenchyme development, and aerobic electron transport chain. Compared to CON LRMSC, IPF cells displayed impaired mitochondrial respiration, lower expression of genes involved in mitochondrial dynamics, and dysmorphic mitochondria. These changes were linked to an impaired autophagic response and a lower mRNA expression of pro-apoptotic genes. In addition, IPF TGFβ-exposed LRMSC presented different expression profiles of mitochondrial-related genes compared to CON TGFβ-treated cells, suggesting that TGFβ reinforces mitochondrial dysfunction. In conclusion, these results suggest that mitochondrial dysfunction is a major event in LRMSC and that their occurrence might limit LRMSC function, thereby contributing to IPF development.

Funder

Carlos III Health Institute

Publisher

MDPI AG

Subject

General Medicine

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