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Published on: September 27, 2024
Innovative therapies for malignant brain tumors: the road to a tailored cure
Alice Giotta Lucifero1, Sabino Luzzi2, Ilaria Brambilla3
1University of Pavia, Pavia, Italy. alicelucifero@gmail.com.
Background:
Immune tolerance, immune escape, neoangiogenesis, phenotypic changes, and glioma stem cells are all responsible for the resistance of malignant brain tumors to current therapies and persistent recurrence. The present study provides a panoramic view of innovative therapies for malignant brain tumors, especially glioblastoma, aimed at achieving a tailored approach.
Methods:
PubMed/Medline and ClinicalTrials.gov were the main sources of an extensive literature review in which "Regenerative Medicine," "Cell-Based Therapy," "Chemotherapy," "Vaccine," "Cell Engineering," "Immunotherapy, Active," "Immunotherapy, Adoptive," "Stem Cells," "Gene Therapy," "Target Therapy," "Brain Cancer," "Glioblastoma," and "Malignant Brain Tumor" were the search terms. Only articles in English published in the last 5 years were included. A further selection was made according to the quality of the studies and level of evidence.
Results:
Cell-based and targeted therapies represent the newest frontiers of brain cancer treatment. Active and adoptive immunotherapies, stem cell therapies, and gene therapies represent a tremendous evolution in recent years due to many preclinical and clinical studies. Clinical trials have validated the effectiveness of antibody-based immunotherapies, including an in-depth study of bevacizumab, in combination with standard of care. Preclinical data highlights the role of vaccines, stem cells, and gene therapies to prevent recurrence.
Conclusion:
Monoclonal antibodies strengthen the first-line therapy for high grade gliomas. Vaccines, engineered cells, stem cells, and gene and targeted therapies are good candidates for second-line treatment of both newly diagnosed and recurrent gliomas. Further data are necessary to validate this tailored approach at the bedside.
Insights
Innovative therapies like immunotherapy, stem cell, and gene therapy show promise for treating malignant brain tumors and glioblastoma, offering new hope against treatment resistance and recurrence.
Area of Science:
- Neuro-oncology
- Regenerative Medicine
- Cancer Therapy
Background:
- Malignant brain tumors, particularly glioblastoma, exhibit resistance to therapies due to immune escape, neoangiogenesis, and glioma stem cells.
- These factors contribute to persistent tumor recurrence, necessitating novel treatment strategies.
Purpose of the Study:
- To provide a comprehensive overview of innovative therapies for malignant brain tumors, focusing on glioblastoma.
- To explore a tailored therapeutic approach to overcome treatment resistance and recurrence.
Main Methods:
- Extensive literature review of PubMed/Medline and ClinicalTrials.gov.
- Search terms included regenerative medicine, cell-based therapy, immunotherapy, stem cells, gene therapy, targeted therapy, and brain cancer.
- Inclusion criteria: English articles from the last 5 years, with further selection based on study quality and evidence level.
Main Results:
- Cell-based and targeted therapies are emerging as key frontiers in brain cancer treatment.
- Active and adoptive immunotherapies, stem cell therapies, and gene therapies have shown significant evolution.
- Clinical trials confirm antibody-based immunotherapies' effectiveness, while preclinical data support vaccines, stem cells, and gene therapies for preventing recurrence.
Conclusions:
- Monoclonal antibodies enhance first-line treatment for high-grade gliomas.
- Vaccines, engineered cells, stem cells, gene, and targeted therapies are promising for newly diagnosed and recurrent gliomas.
- Further clinical validation is required to implement these tailored approaches effectively.
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