Fibroblasts in Kidney Fibrosis Emerge via Endothelial-to-Mesenchymal Transition
Top Cited Papers
- 1 December 2008
- journal article
- research article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 19 (12) , 2282-2287
- https://doi.org/10.1681/asn.2008050513
Abstract
Fibroblasts are key mediators of fibrosis in the kidney and other organs, but their origin during fibrosis is still not completely clear. Activated fibroblasts likely arise from resident quiescent fibroblasts via epithelial-to-mesenchymal transition and from the bone marrow. Here, we demonstrate that endothelial cells also contribute to the emergence of fibroblasts during kidney fibrosis via the process of endothelial-to-mesenchymal transition (EndMT). We examined the contribution of EndMT to renal fibrosis in three mouse models of chronic kidney disease: (1) Unilateral ureteral obstructive nephropathy, (2) streptozotocin-induced diabetic nephropathy, and (3) a model of Alport renal disease. Approximately 30 to 50% of fibroblasts coexpressed the endothelial marker CD31 and markers of fibroblasts and myofibroblasts such as fibroblast specific protein-1 and α-smooth muscle actin. Endothelial lineage tracing using Tie2-Cre;R26R-stop-EYFP transgenic mice further confirmed the presence of EndMT-derived fibroblasts. Collectively, our results demonstrate that EndMT contributes to the accumulation of activated fibroblasts and myofibroblasts in kidney fibrosis and suggest that targeting EndMT might have therapeutic potential.This publication has 21 references indexed in Scilit:
- Discovery of Endothelial to Mesenchymal Transition as a Source for Carcinoma-Associated FibroblastsCancer Research, 2007
- Renal Fibrosis and Glomerulosclerosis in a New Mouse Model of Diabetic Nephropathy and Its Regression by Bone Morphogenic Protein-7 and Advanced Glycation End Product InhibitorsDiabetes, 2007
- Renal Fibroblasts and Myofibroblasts in Chronic Kidney DiseaseJournal of the American Society of Nephrology, 2006
- Bone-marrow-derived stem cells repair basement membrane collagen defects and reverse genetic kidney diseaseProceedings of the National Academy of Sciences, 2006
- Experimental Strategies to Reverse Chronic Renal DiseaseBlood Purification, 2004
- Smad3 deficiency attenuates renal fibrosis, inflammation,and apoptosis after unilateral ureteral obstructionKidney International, 2004
- Conditional Abatement of Tissue Fibrosis Using Nucleoside Analogs to Selectively Corrupt DNA Replication in Transgenic FibroblastsMolecular Therapy, 2001
- Hypoxia-Induced Changes in Extracellular Matrix Metabolism in Renal CellsNephron Experimental Nephrology, 1999
- Molecular and cellular pathophysiology of obstructive nephropathyPediatric Nephrology, 1999
- Diabetic nephropathy in type II diabetesAmerican Journal of Kidney Diseases, 1996