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Published on: January 9, 2019
The Spectrum of Molecular Pathways in Gliomas-An Up-to-Date Review
Reinhold Nafe1, Elke Hattingen1
1Department of Neuroradiology, Clinics of Johann Wolfgang Goethe-University, Schleusenweg 2-16, D-60528 Frankfurt am Main, Germany.
Abstract:
During the last 20 years, molecular alterations have gained increasing significance in the diagnosis and biological assessment of tumors. Gliomas represent the largest group of tumors of the central nervous system, and the main aim of this review is to present the current knowledge on molecular pathways and their alterations in gliomas. A wide range of new insights has been gained, including evidence for the involvement of the WNT pathway or the hippo pathway in the pathobiology of gliomas, indicating a broad involvement of different pathways formerly not considered to play a central role in gliomas. Even new aspects of angiogenic, apoptotic, and metabolic pathways are presented, as well as the rapidly growing field of epigenetic processes, including non-coding RNAs. The two major conclusions drawn from the present review are the distinct interconnectivity of the whole spectrum of molecular pathways and the prominent role of non-coding RNAs, especially circular RNAs, in the regulation of specific targets. All these new insights are discussed, even considering the topic of the resistance to therapy of gliomas, along with aspects that are still incompletely understood, like the role of hydroxymethylation, or even ferroptosis, in the pathobiology of gliomas.
Insights
This review highlights molecular pathway alterations in gliomas, revealing their interconnectivity and the crucial role of non-coding RNAs in tumor biology and therapy resistance.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Research
Background:
- Molecular alterations are increasingly vital for tumor diagnosis and assessment.
- Gliomas are the most common central nervous system tumors.
- Understanding glioma pathobiology requires exploring molecular pathways.
Purpose of the Study:
- To review current knowledge on molecular pathways and their alterations in gliomas.
- To highlight new insights into glioma pathobiology.
- To discuss implications for therapy resistance.
Main Methods:
- Comprehensive literature review of molecular pathways in gliomas.
- Analysis of recent findings on WNT, Hippo, angiogenic, apoptotic, and metabolic pathways.
- Inclusion of epigenetic processes, particularly non-coding RNAs.
Main Results:
- Identified involvement of WNT and Hippo pathways in glioma pathobiology.
- Presented new aspects of angiogenic, apoptotic, and metabolic pathways.
- Highlighted the role of epigenetic processes, including non-coding RNAs.
Conclusions:
- Molecular pathways in gliomas are distinctly interconnected.
- Non-coding RNAs, especially circular RNAs, play a prominent regulatory role.
- Further research is needed on aspects like hydroxymethylation and ferroptosis in gliomas.
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