Molecular alterations in meningiomas: Literature review
Benedito Jamilson Araújo Pereira1, Sueli Mieko Oba-Shinjo1, Antônio Nogueira de Almeida2
1Departament of Neurology, Laboratory of Molecular and Cellular Biology, LIM15, Faculdade de Medicina, Universidade de São Paulo, SP, Brazil.
Abstract:
Meningiomas, tumors that originate from meningothelial cells, account for approximately 30% of all new diagnoses of central nervous system neoplasms. According to the 2016 WHO classification of central nervous system tumors meningiomas are classified into three grades: I, II, and III. Past studies have shown that the risk of meningiomas recurrence is strongly correlated with the molecular profile of the tumor. Extensive whole-exome or whole-genome sequencing has provided a large body of information about the mutational landscape of meningiomas. However, such a stratification of meningiomas based on mutational analysis alone has been proven not to satisfy the clinical need for distinction between patients who need (or do not need) an adjuvant treatment. Combined analysis of exome, transcriptome, methylome and future approaches for epigenetic aspects in meningiomas may allow researchers to unveil a more comprehensive understanding of tumor progression mechanisms and, consequently, a more personalized clinical approach for patients with meningioma. A better understanding of the genetics and clinical behavior of high-grade meningiomas is mandatory in order to better design future clinical trials. By studying the mechanisms underlying these new tumorigenesis pathways, we should be able to offer personalized chemotherapy to patients with surgery and radiation-refractory meningiomas in the near future. The purpose of this article is to accurately bring the compilation of this information, for a greater understanding of the subject.
Insights
Meningiomas, a common brain tumor, require advanced molecular analysis beyond mutations for personalized treatment. Integrating multi-omics data, including epigenetics, is crucial for understanding tumor progression and improving patient care.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Genetics
Background:
- Meningiomas constitute approximately 30% of central nervous system neoplasms.
- The 2016 WHO classification stratifies meningiomas into grades I, II, and III.
- Tumor recurrence risk is linked to molecular profiles, with extensive sequencing revealing mutational landscapes.
Purpose of the Study:
- To compile current information on meningioma genetics and clinical behavior.
- To highlight the limitations of mutation-based stratification for clinical decision-making.
- To emphasize the need for integrated multi-omics analysis for personalized patient management.
Main Methods:
- Review of existing literature on meningioma molecular profiling.
- Analysis of whole-exome and whole-genome sequencing data.
- Discussion of transcriptome and methylome analyses in meningioma research.
Main Results:
- Mutational analysis alone is insufficient for clinical stratification and treatment decisions.
- Combined analysis of exome, transcriptome, and methylome data offers a more comprehensive understanding.
- Epigenetic factors are increasingly recognized for their role in tumor progression.
Conclusions:
- Integrated multi-omics approaches are essential for understanding meningioma progression.
- Personalized treatment strategies for meningioma patients can be developed through advanced molecular insights.
- Further research into high-grade meningiomas is critical for future clinical trial design and targeted therapies.
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