Royal College of Surgeons in Ireland
Browse

Chromosomal instability: a key driver in glioma pathogenesis and progression

Download (5.15 MB)
journal contribution
posted on 2024-12-13, 16:16 authored by Adele Mazzoleni, Wireko Andrew Awuah, Vivek Sanker, Hareesha Rishab Bharadwaj, Nicholas Aderinto, Joecelyn Kirani Tan, Helen Ye Rim Huang, Jeisun Poornaselvan, Muhammad Hamza Shah, Oday Atallah, Aya Tawfik, Mohamed Elsayed Abdelmeguid Elsayed Elmanzalawi, Sama Hesham Ghozlan, Toufik Abdul-Rahman, Jeremiah Adepoju Moyondafoluwa, Athanasios Alexiou, Marios Papadakis

Chromosomal instability (CIN) is a pivotal factor in gliomas, contributing to their complexity, progression, and therapeutic challenges. CIN, characterized by frequent genomic alterations during mitosis, leads to genetic abnormalities and impacts cellular functions. This instability results from various factors, including replication errors and toxic compounds. While CIN's role is well documented in cancers like ovarian cancer, its implications for gliomas are increasingly recognized. CIN influences glioma progression by affecting key oncological pathways, such as tumor suppressor genes (e.g., TP53), oncogenes (e.g., EGFR), and DNA repair mechanisms. It drives tumor evolution, promotes inflammatory signaling, and affects immune interactions, potentially leading to poor clinical outcomes and treatment resistance. This review examines CIN's impact on gliomas through a narrative approach, analyzing data from PubMed/Medline, EMBASE, the Cochrane Library, and Scopus. It highlights CIN's role across glioma subtypes, from adult glioblastomas and astrocytomas to pediatric oligodendrogliomas and astrocytomas. Key findings include CIN's effect on tumor heterogeneity and its potential as a biomarker for early detection and monitoring. Emerging therapies targeting CIN, such as those modulating tumor mutation burden and DNA damage response pathways, show promise but face challenges. The review underscores the need for integrated therapeutic strategies and improved bioinformatics tools like CINdex to advance understanding and treatment of gliomas. Future research should focus on combining CIN-targeted therapies with immune modulation and personalized medicine to enhance patient outcomes. 

Funding

Open Access funding enabled and organized by Projekt DEAL.

History

Data Availability Statement

No datasets were generated or analysed during the current study

Comments

The original article is available at https://eurjmedres.biomedcentral.com/

Published Citation

Mazzoleni A. et al. Chromosomal instability: a key driver in glioma pathogenesis and progression. Eur J Med Res. 2024;29(1):451

Publication Date

4 September 2024

PubMed ID

39227895

Department/Unit

  • Undergraduate Research

Publisher

BioMed Central

Version

  • Published Version (Version of Record)