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Multilevel Pharmacological Effects of Antipsychotics in Potential Glioblastoma Treatment
Wireko Andrew Awuah1, Jacob Kalmanovich2, Aashna Mehta3
1Department of Medical Sciences, Sumy State University, Sumy, Ukraine.
Abstract:
Glioblastoma Multiforme (GBM) is a debilitating type of brain cancer with a high mortality rate. Despite current treatment options such as surgery, radiotherapy, and the use of temozolomide and bevacizumab, it is considered incurable. Various methods, such as drug repositioning, have been used to increase the number of available treatments. Drug repositioning is the use of FDA-approved drugs to treat other diseases. This is possible because the drugs used for this purpose have polypharmacological effects. This means that these medications can bind to multiple targets, resulting in multiple mechanisms of action. Antipsychotics are one type of drug used to treat GBM. Antipsychotics are a broad class of drugs that can be further subdivided into typical and atypical classes. Typical antipsychotics include chlorpromazine, trifluoperazine, and pimozide. This class of antipsychotics was developed early on and primarily works on dopamine D2 receptors, though it can also work on others. Olanzapine and Quetiapine are examples of atypical antipsychotics, a category that was created later. These medications have a high affinity for serotonin receptors such as 5- HT2, but they can also act on dopamine and H1 receptors. Antipsychotic medications, in the case of GBM, also have other effects that can affect multiple pathways due to their polypharmacological effects. These include NF-B suppression, cyclin deregulation, and -catenin phosphorylation, among others. This review will delve deeper into the polypharmacological, the multiple effects of antipsychotics in the treatment of GBM, and an outlook for the field's future progression.
Insights
Antipsychotics show promise in treating Glioblastoma Multiforme (GBM) due to their polypharmacological effects. This review explores their potential to target multiple pathways for improved GBM treatment strategies.
Area of Science:
- Neuro-oncology
- Pharmacology
Background:
- Glioblastoma Multiforme (GBM) remains an incurable brain cancer despite standard treatments.
- Drug repositioning offers a strategy to identify novel GBM therapies.
Approach:
- This review examines antipsychotics, a class of drugs with polypharmacological effects, for GBM treatment.
- It details how these drugs interact with multiple molecular targets and pathways.
Key Points:
- Antipsychotics, both typical and atypical, exhibit diverse mechanisms of action.
- These mechanisms include NF-κB suppression, cyclin deregulation, and β-catenin phosphorylation.
- Polypharmacology allows antipsychotics to impact multiple GBM-related pathways.
Conclusions:
- Antipsychotics represent a promising avenue for novel Glioblastoma Multiforme treatment strategies.
- Further research into their multifaceted effects could lead to improved therapeutic outcomes.
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