Publication | Closed Access
Decreased B16F10 melanoma growth and impaired vascularization in telomerase-deficient mice with critically short telomeres.
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Citations
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References
2002
Year
Telomere Length ModifiersImmunologyCancer BiologyTumor BiologyAngiogenesisEndothelial Cell FunctionTelomerase-deficient MiceB16f10 Melanoma GrowthCell TransplantationRadiation OncologyCancer ResearchGenome InstabilityMelanomaVascular BiologyNeovascularizationCell BiologyTumor MicroenvironmentShort TelomeresCellular SenescenceMedicineCancer Growth
Endothelial cell function and angiogenesis are modulated by aging. However, the underlying molecular mechanisms are largely unknown. Here we show that in telomerase-deficient mice Terc(-/-), short telomeres result in a sharp decrease in angiogenesis in both Matrigel implants and murine melanoma grafts. In the latter model, decreased microvessel counts in late generation Terc(-/-) mice led to diminished tumor cell proliferation and increased tumor cell apoptosis, resulting in a lower tumor growth rate. Our results indicate that telomere length is a key molecular determinant of angiogenic potential in vivo and that telomere length modifiers and telomerase inhibitors could be useful antiangiogenic agents.
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