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Endothelial Extracellular Matrix

Circulation Research · 2005 · Vol. 97(11) · pp. 1093–1107
George E. DavisDonald R. Senger

Abstract

The extracellular matrix (ECM) is critical for all aspects of vascular biology. In concert with supporting cells, endothelial cells (ECs) assemble a laminin-rich basement membrane matrix that provides structural and organizational stability. During the onset of angiogenesis, this basement membrane matrix is degraded by proteinases, among which membrane-type matrix metalloproteinases (MT-MMPs) are particularly significant. As angiogenesis proceeds, ECM serves essential functions in supporting key signaling events involved in regulating EC migration, invasion, proliferation, and survival. Moreover, the provisional ECM serves as a pliable scaffold wherein mechanical guidance forces are established among distal ECs, thereby providing organizational cues in the absence of cell-cell contact. Finally, through specific integrin-dependent signal transduction pathways, ECM controls the EC cytoskeleton to orchestrate the complex process of vascular morphogenesis by which proliferating ECs organize into multicellular tubes with functional lumens. Thus, the composition of ECM and therefore the regulation of ECM degradation and remodeling serves pivotally in the control of lumen and tube formation and, finally, neovessel stability and maturation.

Cell Adhesion Molecules ResearchProtease and Inhibitor MechanismsAngiogenesis and VEGF in CancerCell biologyExtracellular matrixAngiogenesisBasement membraneIntegrinMatrix metalloproteinaseLamininEndothelial stem cellMorphogenesisSignal transduction

MeSH terms

AnimalsBlood VesselsCapillariesCell CommunicationCell MovementCell SurvivalExtracellular MatrixHumansLamininMetalloendopeptidasesMorphogenesisSignal TransductionIntegrinsCytokinesCyclic AMP-Dependent Protein Kinases

Funding

  • V. Kann Rasmussen Foundation
  • National Institutes of Health
Citations
1,194
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