4.7 Article

Tenascin-C Is a Major Component of the Fibrogenic Niche in Kidney Fibrosis

Journal

JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY
Volume 28, Issue 3, Pages 785-801

Publisher

AMER SOC NEPHROLOGY
DOI: 10.1681/ASN.2016020165

Keywords

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Funding

  1. National Science Foundation of China [81130011, 81521003, 31371394]
  2. National Institutes of Health [DK064005, DK106049]
  3. Guangdong Science Foundation Innovative Group [2014A030312014]
  4. Guangzhou Research Fund [15020025]
  5. American Heart Association Fellow-to-Faculty Transition grant [13FTF16990086]

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Kidney fibrosis initiates at certain focal sites in which the fibrogenic niche provides a specialized microenvironment that facilitates fibroblast activation and proliferation. However, the molecular identity of these fibrogenic niches is poorly characterized. Here, we determined whether tenascin-C (TNC), an extracellular matrix glycoprotein, is a component of the fibrogenic niche in kidney fibrosis. In vivo, TNC expression increased rapidly in kidneys subjected to unilateral ureteral obstruction or ischemia/ reperfusion injury and predominantly localized at the foci rich in fibroblasts in renal interstitium. In vitro, TNC selectively promoted renal interstitial fibroblast proliferation, bromodeoxyuridine incorporation, and the expression of proliferation-related genes. The mitogenic activity of TNC required the integrin/focal adhesion kinase/mitogen-activated protein kinase signaling cascade. Using decellularized extracellular matrix scaffolds, we found that TNC-enriched scaffolds facilitated fibroblast proliferation, whereas TNC-deprived scaffolds inhibited proliferation. Matrix scaffold prepared from fibrotic kidney also promoted greater ex vivo fibroblast proliferation than did scaffolds prepared from healthy kidney. Conversely, small interfering RNA mediated knockdown of TNC in vivo repressed injury-induced fibroblast expansion and renal fibrosis. These studies identify TNC as a major constituent of the fibrogenic niche that promotes fibroblast proliferation, and illustrate a pivotal role for the TNC-enriched microenvironment in kidney fibrogenesis.

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