Key result
Endothelial NF-κB inhibition drives immature arterial hyperbranching and impairs distal tissue perfusion.
Endothelial nuclear factor-κB is a key regulator of arteriogenesis and collateral formation by modulating HIF-1α-dependent growth factor expression and Notch signaling.
BACKGROUND: Arteriogenesis and collateral formation are complex processes requiring integration of multiple inputs to coordinate vessel branching, growth, maturation, and network size. Factors regulating these processes have not been determined. METHODS AND RESULTS: We used an inhibitor of NFκB activation (IκBαSR) under control of an endothelial-specific inducible promoter to selectively suppress endothelial nuclear factor-κB activation during development, in the adult vasculature, or in vitro. Inhibition of nuclear factor-κB activation resulted in formation of an excessively branched arterial network that was composed of immature vessels and provided poor distal tissue perfusion. Molecular analysis demonstrated reduced adhesion molecule expression leading to decreased monocyte influx, reduced hypoxia-inducible factor-1α levels, and a marked decrease in δ-like ligand 4 expression with a consequent decrease in Notch signaling. The latter was the principal cause of increased vascular branching as treatment with Jagged-1 peptide reduced the size of the arterial network to baseline levels. CONCLUSIONS: These findings identify nuclear factor-κB as a key regulator of adult and developmental arteriogenesis and collateral formation. Nuclear factor-κB achieves this by regulating hypoxia-inducible factor-1α-dependent expression of vascular endothelial growth factor-A and platelet-derived growth factor-BB, which are necessary for the development and maturation of the arterial collateral network, and by regulating δ-like ligand 4 expression, which in turn determines the size and complexity of the network.
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Tı̂rziu et al. (2012) studied Arteriogenesis and collateral formation. Inhibitor of NFκB activation (IκBαSR) was evaluated on Arterial network branching and tissue perfusion. Inhibition of endothelial nuclear factor-κB activation resulted in an excessively branched arterial network composed of immature vessels and poor distal tissue perfusion.
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