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PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors

Inhibition of Dll4 (delta-like ligand 4)–Notch signaling–mediated tumor angiogenesis is an attractive approach in cancer therapy. However, inhibition of Dll4-Notch signaling has produced different effects in various tumors, and no biomarkers are available for predicting the anti–Dll4-Notch–associate...

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Autores principales: Iwamoto, Hideki, Zhang, Yin, Seki, Takahiro, Yang, Yunlong, Nakamura, Masaki, Wang, Jian, Yang, Xiaojuan, Torimura, Takuji, Cao, Yihai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4640632/
https://www.ncbi.nlm.nih.gov/pubmed/26601163
http://dx.doi.org/10.1126/sciadv.1400244
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author Iwamoto, Hideki
Zhang, Yin
Seki, Takahiro
Yang, Yunlong
Nakamura, Masaki
Wang, Jian
Yang, Xiaojuan
Torimura, Takuji
Cao, Yihai
author_facet Iwamoto, Hideki
Zhang, Yin
Seki, Takahiro
Yang, Yunlong
Nakamura, Masaki
Wang, Jian
Yang, Xiaojuan
Torimura, Takuji
Cao, Yihai
author_sort Iwamoto, Hideki
collection PubMed
description Inhibition of Dll4 (delta-like ligand 4)–Notch signaling–mediated tumor angiogenesis is an attractive approach in cancer therapy. However, inhibition of Dll4-Notch signaling has produced different effects in various tumors, and no biomarkers are available for predicting the anti–Dll4-Notch–associated antitumor activity. We show that human and mouse tumor cell–derived placental growth factor (PlGF) is a key determinant of the Dll4-Notch–induced vascular remodeling and tumor growth. In natural PlGF-expressing human tumors, inhibition of Dll4-Notch signaling markedly accelerated tumor growth by increasing blood perfusion in nonleaking tumor vasculatures. Conversely, in PlGF-negative tumors, Dll4 inhibition suppressed tumor growth by the formation of nonproductive and leaky vessels. Surprisingly, genetic inactivation of vascular endothelial growth factor receptor 1 (VEGFR1) completely abrogated the PlGF-modulated vascular remodeling and tumor growth, indicating a crucial role for VEGFR1-mediated signals in modulating Dll4-Notch functions. These findings provide mechanistic insights on PlGF-VEGFR1 signaling in the modulation of the Dll4-Notch pathway in angiogenesis and tumor growth, and have therapeutic implications of PlGF as a biomarker for predicting the antitumor benefits of Dll4 and Notch inhibitors.
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spelling pubmed-46406322015-11-23 PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors Iwamoto, Hideki Zhang, Yin Seki, Takahiro Yang, Yunlong Nakamura, Masaki Wang, Jian Yang, Xiaojuan Torimura, Takuji Cao, Yihai Sci Adv Research Articles Inhibition of Dll4 (delta-like ligand 4)–Notch signaling–mediated tumor angiogenesis is an attractive approach in cancer therapy. However, inhibition of Dll4-Notch signaling has produced different effects in various tumors, and no biomarkers are available for predicting the anti–Dll4-Notch–associated antitumor activity. We show that human and mouse tumor cell–derived placental growth factor (PlGF) is a key determinant of the Dll4-Notch–induced vascular remodeling and tumor growth. In natural PlGF-expressing human tumors, inhibition of Dll4-Notch signaling markedly accelerated tumor growth by increasing blood perfusion in nonleaking tumor vasculatures. Conversely, in PlGF-negative tumors, Dll4 inhibition suppressed tumor growth by the formation of nonproductive and leaky vessels. Surprisingly, genetic inactivation of vascular endothelial growth factor receptor 1 (VEGFR1) completely abrogated the PlGF-modulated vascular remodeling and tumor growth, indicating a crucial role for VEGFR1-mediated signals in modulating Dll4-Notch functions. These findings provide mechanistic insights on PlGF-VEGFR1 signaling in the modulation of the Dll4-Notch pathway in angiogenesis and tumor growth, and have therapeutic implications of PlGF as a biomarker for predicting the antitumor benefits of Dll4 and Notch inhibitors. American Association for the Advancement of Science 2015-04-10 /pmc/articles/PMC4640632/ /pubmed/26601163 http://dx.doi.org/10.1126/sciadv.1400244 Text en Copyright © 2015, The Authors http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Iwamoto, Hideki
Zhang, Yin
Seki, Takahiro
Yang, Yunlong
Nakamura, Masaki
Wang, Jian
Yang, Xiaojuan
Torimura, Takuji
Cao, Yihai
PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title_full PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title_fullStr PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title_full_unstemmed PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title_short PlGF-induced VEGFR1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to Dll4-Notch inhibitors
title_sort plgf-induced vegfr1-dependent vascular remodeling determines opposing antitumor effects and drug resistance to dll4-notch inhibitors
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4640632/
https://www.ncbi.nlm.nih.gov/pubmed/26601163
http://dx.doi.org/10.1126/sciadv.1400244
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