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Regulation of endothelial cell plasticity by TGF-β

Cell and Tissue Research · 2011 · Vol. 347(1) · pp. 177–186
Laurens A. van MeeterenPeter ten Dijke

Abstract

Recent evidence has demonstrated that endothelial cells can have a remarkable plasticity. By a process called Endothelial-to-Mesenchymal Transition (EndMT) endothelial cells convert to a more mesenchymal cell type that can give rise to cells such as fibroblasts, but also bone cells. EndMT is essential during embryonic development and tissue regeneration. Interestingly, it also plays a role in pathological conditions like fibrosis of organs such as the heart and kidney. In addition, EndMT contributes to the generation of cancer associated fibroblasts that are known to influence the tumor-microenvironment favorable for the tumor cells. EndMT is a form of the more widely known and studied Epithelial-to-Mesenchymal Transition (EMT). Like EMT, EndMT can be induced by transforming growth factor (TGF)-β. Indeed many studies have pointed to the important role of TGF-β receptor/Smad signaling and downstream targets, such as Snail transcriptional repressor in EndMT. By selective targeting of TGF-β receptor signaling pathological EndMT may be inhibited for the therapeutic benefit of patients with cancer and fibrosis.

TGF-β signaling in diseasesCongenital heart defects researchRenal and related cancersMesenchymal stem cellSMADCell biologyCancer researchTransforming growth factorFibrosisEmbryonic stem cellEpithelial–mesenchymal transitionCardiac fibrosisBiology

MeSH terms

AnimalsCell DifferentiationFibrosisHumansMesodermNeoplasmsSignal TransductionBiomarkersTransforming Growth Factor betaEndothelial CellsCell Transdifferentiation

Funding

  • KWF Kankerbestrijding
Citations
324
FWCI
7.45
field-weighted impact
References
90
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98%
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References
Fibroblasts in cancer
Nature reviews. Cancer · 2006 · 4,428 citations
PAI‐1 in tissue fibrosis
Journal of Cellular Physiology · 2011 · 669 citations
Non-Smad TGF-β signals
Journal of Cell Science · 2005 · 1,071 citations
TGF-β SIGNAL TRANSDUCTION
Annual Review of Biochemistry · 1998 · 7,560 citations
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