Urine-derived exosomes from individuals with IPF carry pro-fibrotic cargo

Author:

Elliot Sharon1ORCID,Catanuto Paola1,Pereira-simon Simone1,Xia Xiaomei2,Shahzeidi Shahriar3,Roberts Evan4,Ludlow John5,Hamdan Suzana67,Daunert Sylvia678,Parra Jennifer2,Stone Rivka9,Pastar Irena9,Tomic-Canic Marjana9,Glassberg Marilyn K1210

Affiliation:

1. DeWitt Daughtry Family Department of Surgery, University of Miami Leonard M. Miller School of Medicine

2. Department of Medicine, Division of Pulmonary, Critical Care and Sleep, University of Miami

3. Medical Director, Grand Health Institute

4. Cancer Modeling Shared Resource Sylvester Comprehensive Cancer Center, University of Miami

5. ZenBio Inc.

6. Department of Biochemistry and Molecular Biology, University of Miami, Miller School of Medicine

7. Dr. JT Macdonald Foundation Biomedical Nanotechnology Institute, University of Miami Miller School of Medicine

8. Miami Clinical and Translational Science Institute, University of Miami Miller School of Medicine

9. Wound Healing and Regenerative Medicine Research Program, Dr Phillip Frost Department of Dermatology and Cutaneous Surgery, University of Miami

10. Department of Medicine, Stritch School of Medicine, Loyola University Chicago

Abstract

Background:MicroRNAs (miRNA) and other components contained in extracellular vesicles may reflect the presence of a disease. Lung tissue, sputum, and sera of individuals with idiopathic pulmonary fibrosis (IPF) show alterations in miRNA expression. We designed this study to test whether urine and/or tissue derived exosomal miRNAs from individuals with IPF carry cargo that can promote fibrosis.Methods:Exosomes were isolated from urine (U-IPFexo), lung tissue myofibroblasts (MF-IPFexo), serum from individuals with IPF (n=16) and age/sex-matched controls without lung disease (n=10). We analyzed microRNA expression of isolated exosomes and their in vivo bio-distribution. We investigated the effect on ex vivo skin wound healing and in in vivo mouse lung models.Results:U-IPFexo or MF-IPFexo expressed miR-let-7d, miR-29a-5p, miR-181b-3p and miR-199a-3p consistent with previous reports of miRNA expression obtained from lung tissue/sera from patients with IPF. In vivo bio-distribution experiments detected bioluminescent exosomes in the lung of normal C57Bl6 mice within 5 min after intravenous infusion, followed by distribution to other organs irrespective of exosome source. Exosomes labeled with gold nanoparticles and imaged by transmission electron microscopy were visualized in alveolar epithelial type I and type II cells. Treatment of human and mouse lung punches obtained from control, non-fibrotic lungs with either U-IPFexo or MF-IPFexo produced a fibrotic phenotype. A fibrotic phenotype was also induced in a human ex vivo skin model and in in vivo lung models.Conclusions:Our results provide evidence of a systemic feature of IPF whereby exosomes contain pro-fibrotic miRNAs when obtained from a fibrotic source and interfere with response to tissue injury as measured in skin and lung models.Funding:This work was supported in part by Lester and Sue Smith Foundation and The Samrick Family Foundation and NIH grants R21 AG060338 (SE and MKG), U01 DK119085 (IP, RS, MTC).

Funder

Lester and Sue Smith Foundation

Samrick Family Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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