Javascript must be enabled to continue!
Gliomas preferentially develop within the action-mode network
View through CrossRef
Abstract
Gliomas tend to arise in specific brain regions and may integrate into functional circuits, suggesting they could be regulated by brain activity. However, it remains unclear whether glioma growth is related to system-level brain networks. Analyzing neuroimaging data from three datasets including 1,310 patients with cerebral gliomas, we identified and replicated a functionally connected glioma network, which overlaps with the action-mode network (AMN), somatomotor network (SMN), and action-related subcortical regions. Resting-state functional connectivity (RSFC) of the AMN successfully predicted the location of glioma occurrence in two independent datasets with complex tumor distributions. Remarkably, no patient had a glioma entirely outside the AMN, and over 89% of patients exhibited gliomas with at least 50% overlap with the network. Moreover, the spatial overlap between glioma location and the AMN demonstrated significant prognostic value in survival analyses, with higher AMN-tumor overlap associated with poorer overall survival. Notably, the acetylcholine transporter, a key player in glioma pathogenesis that drives transcriptional reprogramming, showed an expression pattern overlapping with the AMN. Meta-analytic annotations further linked the glioma network to processes of action initiation, execution, and feedback. These findings indicate that gliomas preferentially arise in circuits involved in action and highlight the central role of the AMN in glioma pathophysiology and growth.
Title: Gliomas preferentially develop within the action-mode network
Description:
Abstract
Gliomas tend to arise in specific brain regions and may integrate into functional circuits, suggesting they could be regulated by brain activity.
However, it remains unclear whether glioma growth is related to system-level brain networks.
Analyzing neuroimaging data from three datasets including 1,310 patients with cerebral gliomas, we identified and replicated a functionally connected glioma network, which overlaps with the action-mode network (AMN), somatomotor network (SMN), and action-related subcortical regions.
Resting-state functional connectivity (RSFC) of the AMN successfully predicted the location of glioma occurrence in two independent datasets with complex tumor distributions.
Remarkably, no patient had a glioma entirely outside the AMN, and over 89% of patients exhibited gliomas with at least 50% overlap with the network.
Moreover, the spatial overlap between glioma location and the AMN demonstrated significant prognostic value in survival analyses, with higher AMN-tumor overlap associated with poorer overall survival.
Notably, the acetylcholine transporter, a key player in glioma pathogenesis that drives transcriptional reprogramming, showed an expression pattern overlapping with the AMN.
Meta-analytic annotations further linked the glioma network to processes of action initiation, execution, and feedback.
These findings indicate that gliomas preferentially arise in circuits involved in action and highlight the central role of the AMN in glioma pathophysiology and growth.
Related Results
Decreased Expression of PACSIN1 in Brain Glioma Samples Predicts Poor Prognosis
Decreased Expression of PACSIN1 in Brain Glioma Samples Predicts Poor Prognosis
Gliomas are the most severe brain tumours with a poor prognosis. Although surgery, postoperative radiotherapy and chemotherapy can improve the survival rate of glioma patients, the...
Abstract 1345: Mutant IDH1 and tissue factor in gliomas
Abstract 1345: Mutant IDH1 and tissue factor in gliomas
Abstract
Background: IDH1 mutations (IDH1mut) occur in 20-30% of gliomas, induce DNA hypermethylation, and are associated with a better prognosis than IDH1 wild-type...
BIOM-17. DIFFERENCES IN THE IMMUNE MICROENVIRONMENT OF GLIOMAS HARBORING IDH2 VERSUS IDH1 MUTATIONS
BIOM-17. DIFFERENCES IN THE IMMUNE MICROENVIRONMENT OF GLIOMAS HARBORING IDH2 VERSUS IDH1 MUTATIONS
Abstract
INTRODUCTION
IDH mutations are a defining feature of lower-grade glioma and secondary glioblastoma. Approximately 95% o...
SURG-05. EXPERIENCE PROFILING OF FLUORESCENCE-GUIDED SURGERY FOR GLIOMAS
SURG-05. EXPERIENCE PROFILING OF FLUORESCENCE-GUIDED SURGERY FOR GLIOMAS
Abstract
Numerous studies reported a usefulness of 5-ALA fluorescence-guided surgery (FGS) in high grade gliomas. However, fluorescence pattern and intensity is vari...
68Ga-PSMA-11 PET/CT Imaging in Brain Gliomas and Its Correlation With Clinicopathological Prognostic Parameters
68Ga-PSMA-11 PET/CT Imaging in Brain Gliomas and Its Correlation With Clinicopathological Prognostic Parameters
Background
Gliomas are the most common primary central nervous system tumors, of which the malignant gliomas account for 60%–75%. The primary and secondary brain malign...
Molecular classification of adult gliomas: recent advances and future perspectives
Molecular classification of adult gliomas: recent advances and future perspectives
Purpose of review
This review summarizes recent advances in the molecular classification of adult gliomas.
Recent findings
...
High EZH2 Protein Expression Is a Poor Prognostic Predictor in IDH1 R132H-Negative Gliomas
High EZH2 Protein Expression Is a Poor Prognostic Predictor in IDH1 R132H-Negative Gliomas
Accumulating data indicates that enhancer of zeste homology 2 (EZH2) and isocitrate dehydrogenase 1 (IDH1) are implicated in promoting tumourigenesis in a myriad of malignancies in...
ANGI-15. IDH1 R132H MUTATION IMPAIRS GLIOMA INVASIVENESS THROUGH EPIGENETIC REPRESSION OF MMP2 IN EXPERIMENTAL MODELS AND HUMAN GBMS
ANGI-15. IDH1 R132H MUTATION IMPAIRS GLIOMA INVASIVENESS THROUGH EPIGENETIC REPRESSION OF MMP2 IN EXPERIMENTAL MODELS AND HUMAN GBMS
Abstract
Glioblastoma (GBM) is a highly diffusive tumor which restricts the efficacy of surgical resection and facilitates tumor recurrence. Matrix metalloprotein...

