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Published on: October 27, 2014
Drug repurposing for the treatment of glioblastoma multiforme
Claudia Abbruzzese1, Silvia Matteoni1, Michele Signore2
1Department of Research, Advanced Diagnostics and Technological Innovation, Unit of Cellular Networks and Therapeutic Targets, Proteomics Area, Regina Elena National Cancer Institute, IRCCS, Via Elio Chianesi, 53, Rome, Italy.
Background:
Glioblastoma Multiforme is the deadliest type of brain tumor and is characterized by very poor prognosis with a limited overall survival. Current optimal therapeutic approach has essentially remained unchanged for more than a decade, consisting in maximal surgical resection followed by radiotherapy plus temozolomide.
Main Body:
Such a dismal patient outcome represents a compelling need for innovative and effective therapeutic approaches. Given the development of new drugs is a process presently characterized by an immense increase in costs and development time, drug repositioning, finding new uses for existing approved drugs or drug repurposing, re-use of old drugs when novel molecular findings make them attractive again, are gaining significance in clinical pharmacology, since it allows faster and less expensive delivery of potentially useful drugs from the bench to the bedside. This is quite evident in glioblastoma, where a number of old drugs is now considered for clinical use, often in association with the first-line therapeutic intervention. Interestingly, most of these medications are, or have been, widely employed for decades in non-neoplastic pathologies without relevant side effects. Now, the refinement of their molecular mechanism(s) of action through up-to-date technologies is paving the way for their use in the therapeutic approach of glioblastoma as well as other cancer types.
Short Conclusion:
The spiraling costs of new antineoplastic drugs and the long time required for them to reach the market demands a profoundly different approach to keep lifesaving therapies affordable for cancer patients. In this context, repurposing can represent a relatively inexpensive, safe and fast approach to glioblastoma treatment. To this end, pros and cons must be accurately considered.
Insights
Drug repurposing offers a faster, cheaper way to find new glioblastoma treatments. This approach re-examines existing drugs for novel cancer applications, addressing the limitations of developing new antineoplastic drugs.
Area of Science:
- Oncology
- Pharmacology
- Drug Discovery
Background:
- Glioblastoma Multiforme (GBM) is an aggressive brain tumor with a poor prognosis.
- Current GBM treatment, including surgery, radiotherapy, and temozolomide, has seen limited advancement.
- There is a critical need for novel and effective therapeutic strategies for GBM patients.
Purpose of the Study:
- To explore the potential of drug repurposing as a viable strategy for glioblastoma treatment.
- To address the escalating costs and lengthy timelines associated with developing new cancer drugs.
- To identify existing medications with potential efficacy in treating glioblastoma.
Main Methods:
- Reviewing the principles and significance of drug repurposing in clinical pharmacology.
- Examining the application of drug repurposing specifically within the context of glioblastoma therapy.
- Investigating the potential use of established drugs, previously used for non-neoplastic conditions, in cancer treatment.
Main Results:
- Drug repurposing allows for faster and more cost-effective delivery of potential therapeutics.
- Several existing drugs are being considered for glioblastoma treatment, often in combination with standard therapies.
- Many repurposed drugs have a history of safe use in other medical conditions.
Conclusions:
- Repurposing existing drugs presents an affordable, safe, and rapid alternative for glioblastoma treatment.
- This approach contrasts with the high costs and long development times of novel antineoplastic drugs.
- Careful consideration of the advantages and disadvantages of drug repurposing is essential for its successful implementation.

