Proceedings of the National Academy of Sciences · 2009 · 69 citations · 40 references
Regenerative MedicineAngiogenesisNormalized Vascular PhenotypeCancer GrowthTumor VasculatureNeovascularizationVascular BiologyCell BiologyPlgf-induced Vascular NormalizationMatrix BiologyVascular FunctionsMedicineRadiation OncologyCancer ResearchTumor MicroenvironmentTumor BiologyMalignant Cell-derived PlgfExtracellular Matrix
Vascular functions of PlGF remain poorly understood and controversial. Here, we show that tumor cell-derived PlGF-1 and PlGF-2 displayed significant remodeling effects on the tumor vasculature, leading to a normalized vascular phenotype and improved functions against leakage. In two murine tumor models, that is, T241 fibrosarcoma and Lewis lung carcinoma, stable expression of PlGF-1 and PlGF-2 in tumor cells resulted in significant reduction of tumor microvascular density and branch formation. Markedly, the vasculature in PlGF-expressing tumors consisted of relatively large-diameter microvessels with substantial improvement of pericyte coverage. Similarly, PlGF-induced vascular normalization and remodeling were also observed in a spontaneous human choriocarcinoma that expressed endogenous PlGF. Our findings shed light on functions of PlGF as a vascular remodeling factor that normalizes the tumor vasculature and thus may have conceptual implications of cancer therapy.
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Ranibizumab for Neovascular Age-Related Macular Degeneration
Philip J. Rosenfeld, David M. Brown, Jeffrey S. Heier et al. · New England Journal of Medicine · 2006 · 5.8K citations · Full text