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J Am Soc Nephrol ; 27(3): 781-90, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26204899

ABSTRACT

AKI with incomplete epithelial repair is a major contributor to CKD characterized by tubulointerstitial fibrosis. Injury-induced epithelial secretion of profibrotic factors is hypothesized to underlie this link, but the identity of these factors and whether epithelial injury is required remain undefined. We previously showed that activation of the canonical Wnt signaling pathway in interstitial pericytes cell autonomously drives myofibroblast activation in vivo. Here, we show that inhibition of canonical Wnt signaling also substantially prevented TGFß-dependent myofibroblast activation in vitro. To investigate whether Wnt ligand derived from proximal tubule is sufficient for renal fibrogenesis, we generated a novel mouse strain with inducible proximal tubule Wnt1 secretion. Adult mice were treated with vehicle or tamoxifen and euthanized at 12 or 24 weeks postinjection. Compared with vehicle-treated controls, kidneys with tamoxifen-induced Wnt1 expression from proximal tubules displayed interstitial myofibroblast activation and proliferation and increased matrix protein production. PDGF receptor ß-positive myofibroblasts isolated from these kidneys exhibited increased canonical Wnt target gene expression compared with controls. Notably, fibrotic kidneys had no evidence of inflammatory cytokine expression, leukocyte infiltration, or epithelial injury, despite the close histologic correlation of each with CKD. These results provide the first example of noninflammatory renal fibrosis. The fact that epithelial-derived Wnt ligand is sufficient to drive interstitial fibrosis provides strong support for the maladaptive repair hypothesis in the AKI to CKD transition.


Subject(s)
Kidney Tubules, Proximal/metabolism , Kidney Tubules, Proximal/pathology , Myofibroblasts/metabolism , Paracrine Communication , Transforming Growth Factor beta/metabolism , Wnt Signaling Pathway , Wnt1 Protein/metabolism , Actins/metabolism , Animals , Antineoplastic Agents, Hormonal/pharmacology , Cell Proliferation , Disease Models, Animal , Fibronectins/metabolism , Fibrosis , Gene Expression , Inflammation/complications , Ligands , Mice , Myofibroblasts/physiology , Receptor, Platelet-Derived Growth Factor beta/metabolism , Tamoxifen/pharmacology , Wnt Signaling Pathway/genetics , Wnt1 Protein/genetics
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