Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Data from FGFR1 Induces Glioblastoma Radioresistance through the PLCγ/Hif1α Pathway

View through CrossRef
<div>Abstract<p>FGF2 signaling in glioblastoma induces resistance to radiotherapy, so targeting FGF2/FGFR pathways might offer a rational strategy for tumor radiosensitization. To investigate this possibility, we evaluated a specific role for FGFR1 in glioblastoma radioresistance as modeled by U87 and LN18 glioblastomas in mouse xenograft models. Silencing FGFR1 decreased radioresistance in a manner associated with radiation-induced centrosome overduplication and mitotic cell death. Inhibiting PLCγ (PLCG1), a downstream effector signaling molecule for FGFR1, was sufficient to produce similar effects, arguing that PLCγ is an essential mediator of FGFR1-induced radioresistance. FGFR1 silencing also reduced expression of HIF1α, which in addition to its roles in hypoxic responses exerts an independent effect on radioresistance. Finally, FGFR1 silencing delayed the growth of irradiated tumor xenografts, in a manner that was associated with reduced HIF1α levels but not blood vessel alterations. Taken together, our results offer a preclinical proof of concept that FGFR1 targeting can degrade radioresistance in glioblastoma, a widespread problem in this tumor, prompting clinical investigations of the use of FGFR1 inhibitors for radiosensitization. <i>Cancer Res; 76(10); 3036–44. ©2016 AACR</i>.</p></div>
Title: Data from FGFR1 Induces Glioblastoma Radioresistance through the PLCγ/Hif1α Pathway
Description:
<div>Abstract<p>FGF2 signaling in glioblastoma induces resistance to radiotherapy, so targeting FGF2/FGFR pathways might offer a rational strategy for tumor radiosensitization.
To investigate this possibility, we evaluated a specific role for FGFR1 in glioblastoma radioresistance as modeled by U87 and LN18 glioblastomas in mouse xenograft models.
Silencing FGFR1 decreased radioresistance in a manner associated with radiation-induced centrosome overduplication and mitotic cell death.
Inhibiting PLCγ (PLCG1), a downstream effector signaling molecule for FGFR1, was sufficient to produce similar effects, arguing that PLCγ is an essential mediator of FGFR1-induced radioresistance.
FGFR1 silencing also reduced expression of HIF1α, which in addition to its roles in hypoxic responses exerts an independent effect on radioresistance.
Finally, FGFR1 silencing delayed the growth of irradiated tumor xenografts, in a manner that was associated with reduced HIF1α levels but not blood vessel alterations.
Taken together, our results offer a preclinical proof of concept that FGFR1 targeting can degrade radioresistance in glioblastoma, a widespread problem in this tumor, prompting clinical investigations of the use of FGFR1 inhibitors for radiosensitization.
<i>Cancer Res; 76(10); 3036–44.
©2016 AACR</i>.
</p></div>.

Related Results

Identification of a Novel HOOK3-FGFR1 Fusion Gene Involved in Activation of The NF-kappaB Pathway
Identification of a Novel HOOK3-FGFR1 Fusion Gene Involved in Activation of The NF-kappaB Pathway
Abstract BackgroundRearrangements involving the fibroblast growth factor receptor 1 (FGFR1) gene result in 8p11 myeloproliferative syndrome (EMS), which is a rare and aggre...
Abstract 462: Targeting hepatocellular carcinoma by suppressing HIF-1 alpha alone and in combination with therapeutic drugs
Abstract 462: Targeting hepatocellular carcinoma by suppressing HIF-1 alpha alone and in combination with therapeutic drugs
Abstract Hepatocellular carcinoma (HCC) is the sixth most common cancer worldwide and the third most common cause of cancer related death. HIF-1 alpha (HIF1α) is ove...
The Regulation of Hypoxia Inducible Factor (HIF)1α Expression by Quercetin: an In Silico Study
The Regulation of Hypoxia Inducible Factor (HIF)1α Expression by Quercetin: an In Silico Study
Background: Cancer disease is a growing health problem in developing and developed countries. Hypoxia-inducible factor-1a (HIF1α) is a transcription factor responsible for expressi...
Investigating the role of the apelinergic system in glioblastoma
Investigating the role of the apelinergic system in glioblastoma
<p>Elucidating the molecular signalling circuitry that underpins the pathogenesis of cancers is critical to understanding and developing effective treatment paradigms for can...
Abstract 283: Osteopontin cleavage fragments drive FGFR1-mediated mammary tumorigenesis
Abstract 283: Osteopontin cleavage fragments drive FGFR1-mediated mammary tumorigenesis
Abstract Breast cancer is the second leading cause of cancer-related deaths in women in the United States. Over 40,000 women in the U.S. die of breast cancer annuall...
β2-integrins control HIF1α activation in human neutrophils
β2-integrins control HIF1α activation in human neutrophils
During inflammation, human neutrophils engage β2-integrins to migrate from the blood circulation to inflammatory sites with high cytokine but low oxygen concentrations. We tested t...
HIF1alpha Cardioprotection in COVID-19 Patients
HIF1alpha Cardioprotection in COVID-19 Patients
ABSTRACTImportanceSARS-CoV-2 infection directly causes severe acute respiratory illness, leading to systemic tissue hypoxia and ischemia including the heart. Myocardial cytopathy a...
Abstract 1580: Molecular mechanisms of OSM-induced VEGF in breast cancer
Abstract 1580: Molecular mechanisms of OSM-induced VEGF in breast cancer
Abstract Oncostatin M (OSM) is an interleukin-6 (IL-6) family cytokine that has been shown to induce expression of vascular endothelial growth factor (VEGF) in astro...

Back to Top