Tyrosine-protein kinase receptor Tie2, also known as Tunica interna Endothelial cell Kinase or TEK plays a prominent role in endothelial responses to angiogenic and inflammatory stimuli. Here we generated a novel inducible Tie2 knockout mouse model, which targets mature (micro)vascular endothelium, enabling the study of the organ-specific contribution of Tie2 to these responses. Mice with floxed Tie2 exon 9 alleles (Tie2floxed/floxed) were crossed with end-SCL-Cre-ERT transgenic mice, generating offspring in which Tie2 exon 9 is deleted in the endothelial compartment upon tamoxifen-induced activation of Cre-recombinase (Tie2ΔE9). Successful deletion of Tie2 exon 9 in kidney, lung, heart, aorta, and liver, was accompanied by a heterogeneous,...
Accumulating experimental evidence indicates that endothelial cell growth and blood vessel morphogen...
Albert Kuivenhoven. Targeting the Hprt locus in mice reveals differential regulation of Tie2 gene ex...
Leukocytes and resident cells in the arterial wall contribute to atherosclerosis, especially at site...
Tyrosine-protein kinase receptor Tie2, also known as Tunica interna Endothelial cell Kinase or TEK p...
Tyrosine kinase receptor (Tie2) is mainly expressed by endothelial cells. In animal models mimicking...
The development of a functional vascular system is impinged upon the restructuring of a primitive va...
Tie-1 and Tie-2 define a new class of receptor tyrosine kinases that are specifically expressed in d...
Endothelial cells (ECs) in the microvasculature in organs are active participants in the pathophysio...
TIE2 is a vascular endothelial-specific receptor tyrosine kinase essential for the regulation of vas...
grantor: University of TorontoTEK and TIE are related receptor tyrosine kinases (RTKs) exp...
A critical role for Tie1, an orphan endothelial receptor, in blood vessel morphogenesis has emerged ...
Angiogenesis is a regulated process involving the proliferation, migration, and remodeling of differ...
10.1152/physiolgenomics.00063.2005.—The elaboration of the vasculature during embryonic development ...
SummaryTie1 is a mechanistically poorly characterized endothelial cell (EC)-specific orphan receptor...
Tie1 is a mechanistically poorly characterized endothelial cell (EC)-specific orphan receptor. Yet, ...
Accumulating experimental evidence indicates that endothelial cell growth and blood vessel morphogen...
Albert Kuivenhoven. Targeting the Hprt locus in mice reveals differential regulation of Tie2 gene ex...
Leukocytes and resident cells in the arterial wall contribute to atherosclerosis, especially at site...
Tyrosine-protein kinase receptor Tie2, also known as Tunica interna Endothelial cell Kinase or TEK p...
Tyrosine kinase receptor (Tie2) is mainly expressed by endothelial cells. In animal models mimicking...
The development of a functional vascular system is impinged upon the restructuring of a primitive va...
Tie-1 and Tie-2 define a new class of receptor tyrosine kinases that are specifically expressed in d...
Endothelial cells (ECs) in the microvasculature in organs are active participants in the pathophysio...
TIE2 is a vascular endothelial-specific receptor tyrosine kinase essential for the regulation of vas...
grantor: University of TorontoTEK and TIE are related receptor tyrosine kinases (RTKs) exp...
A critical role for Tie1, an orphan endothelial receptor, in blood vessel morphogenesis has emerged ...
Angiogenesis is a regulated process involving the proliferation, migration, and remodeling of differ...
10.1152/physiolgenomics.00063.2005.—The elaboration of the vasculature during embryonic development ...
SummaryTie1 is a mechanistically poorly characterized endothelial cell (EC)-specific orphan receptor...
Tie1 is a mechanistically poorly characterized endothelial cell (EC)-specific orphan receptor. Yet, ...
Accumulating experimental evidence indicates that endothelial cell growth and blood vessel morphogen...
Albert Kuivenhoven. Targeting the Hprt locus in mice reveals differential regulation of Tie2 gene ex...
Leukocytes and resident cells in the arterial wall contribute to atherosclerosis, especially at site...