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Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells

Macrophage migration inhibitory factor (MIF) is over-expressed and secreted in various cancer cells in particular in response to hypoxia. Recent studies have shown that, under hypoxic conditions, glioblastoma (GBM) cells display the ability to drive blood-perfused vasculogenic mimicry (VM). The aim...

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Autores principales: Guo, Xing, Xu, Shugang, Gao, Xiao, Wang, Jian, Xue, Hao, Chen, Zihang, Zhang, Jinsen, Guo, Xiaofan, Qian, Mingyu, Qiu, Wei, Li, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5655204/
https://www.ncbi.nlm.nih.gov/pubmed/29113309
http://dx.doi.org/10.18632/oncotarget.18673
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author Guo, Xing
Xu, Shugang
Gao, Xiao
Wang, Jian
Xue, Hao
Chen, Zihang
Zhang, Jinsen
Guo, Xiaofan
Qian, Mingyu
Qiu, Wei
Li, Gang
author_facet Guo, Xing
Xu, Shugang
Gao, Xiao
Wang, Jian
Xue, Hao
Chen, Zihang
Zhang, Jinsen
Guo, Xiaofan
Qian, Mingyu
Qiu, Wei
Li, Gang
author_sort Guo, Xing
collection PubMed
description Macrophage migration inhibitory factor (MIF) is over-expressed and secreted in various cancer cells in particular in response to hypoxia. Recent studies have shown that, under hypoxic conditions, glioblastoma (GBM) cells display the ability to drive blood-perfused vasculogenic mimicry (VM). The aim of this study was to investigate the underlying mechanism of MIF in the regulation of hypoxia-induced VM in GBM cells. By analyzing clinical specimens, we observed the co-localization of MIF, C-X-C motif chemokine receptor 4 (CXCR4) and VM in hypoxic regions of gliomas. In vitro, the exposure of GBM cells (U87 and U251) to hypoxia increased the expression of MIF and CXCR4 and induced VMs. Other data demonstrated that ectogenic rhMIF promoted VMs in GBM cells and knock-down endogenous MIF attenuated hypoxia-induced VMs. In addition, we demonstrated that MIF augmented VM formation ability by enhancing the epithelial mesenchymal transition (EMT) through the CXCR4-AKT pathway. Moreover, in vivo, the subcutaneous injection of rhMIF resulted in the progression of EMT and VMs formation. On the contrary, CXCR4-AKT pathway inhibitors blocked the effects of rhMIF on EMT and VMs formation. Collectively, our results support a critical role for the MIF-CXCR4 signaling axis in regulating hypoxia-induced VMs formation, indicating the potential usefulness of MIF as a notable target for the anti-vascularization treatment of GBM.
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spelling pubmed-56552042017-11-06 Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells Guo, Xing Xu, Shugang Gao, Xiao Wang, Jian Xue, Hao Chen, Zihang Zhang, Jinsen Guo, Xiaofan Qian, Mingyu Qiu, Wei Li, Gang Oncotarget Research Paper Macrophage migration inhibitory factor (MIF) is over-expressed and secreted in various cancer cells in particular in response to hypoxia. Recent studies have shown that, under hypoxic conditions, glioblastoma (GBM) cells display the ability to drive blood-perfused vasculogenic mimicry (VM). The aim of this study was to investigate the underlying mechanism of MIF in the regulation of hypoxia-induced VM in GBM cells. By analyzing clinical specimens, we observed the co-localization of MIF, C-X-C motif chemokine receptor 4 (CXCR4) and VM in hypoxic regions of gliomas. In vitro, the exposure of GBM cells (U87 and U251) to hypoxia increased the expression of MIF and CXCR4 and induced VMs. Other data demonstrated that ectogenic rhMIF promoted VMs in GBM cells and knock-down endogenous MIF attenuated hypoxia-induced VMs. In addition, we demonstrated that MIF augmented VM formation ability by enhancing the epithelial mesenchymal transition (EMT) through the CXCR4-AKT pathway. Moreover, in vivo, the subcutaneous injection of rhMIF resulted in the progression of EMT and VMs formation. On the contrary, CXCR4-AKT pathway inhibitors blocked the effects of rhMIF on EMT and VMs formation. Collectively, our results support a critical role for the MIF-CXCR4 signaling axis in regulating hypoxia-induced VMs formation, indicating the potential usefulness of MIF as a notable target for the anti-vascularization treatment of GBM. Impact Journals LLC 2017-06-27 /pmc/articles/PMC5655204/ /pubmed/29113309 http://dx.doi.org/10.18632/oncotarget.18673 Text en Copyright: © 2017 Guo et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Guo, Xing
Xu, Shugang
Gao, Xiao
Wang, Jian
Xue, Hao
Chen, Zihang
Zhang, Jinsen
Guo, Xiaofan
Qian, Mingyu
Qiu, Wei
Li, Gang
Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title_full Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title_fullStr Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title_full_unstemmed Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title_short Macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via CXCR4/AKT/EMT pathway in human glioblastoma cells
title_sort macrophage migration inhibitory factor promotes vasculogenic mimicry formation induced by hypoxia via cxcr4/akt/emt pathway in human glioblastoma cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5655204/
https://www.ncbi.nlm.nih.gov/pubmed/29113309
http://dx.doi.org/10.18632/oncotarget.18673
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