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Advancing brain tumor therapy: unveiling the potential of PROTACs for targeted protein degradation
Saooda Ibrahim1, Muhammad Umer Khan1, Saadia Noreen1
1Institute of Molecular Biology and Biotechnology, The University of Lahore, Lahore, Pakistan.
Abstract:
The long-term treatment of malignancies, particularly brain tumors, is challenged by abnormal protein expression and drug resistance. In terms of potency, selectivity, and overcoming drug resistance, Proteolysis Targeting Chimeras (PROTACs), a cutting-edge method used to selectively degrade target proteins, beats traditional inhibitors. This review summarizes recent research on using PROTACs as a therapeutic strategy for brain tumors, focusing on their mechanism, benefits, limitations, and the need for optimization. The review draws from a comprehensive search of peer-reviewed literature, scientific databases, and clinical trial databases. Articles published up to the knowledge cutoff date up to 14 April 2023 were included. Inclusion criteria covered PROTAC-based brain tumor therapies, including preclinical and early clinical studies, with no restrictions on design or publication type. We included studies using in vitro, in vivo brain tumor models, and human subjects. Eligible treatments involved PROTACs targeting proteins linked to brain tumor progression. We evaluated the selected studies for methodology, including design, sample size, and data analysis techniques. A narrative synthesis summarized key outcomes and trends in PROTAC-based brain tumor therapy. Recent research shows PROTACs selectively degrade brain tumor-related proteins with minimal off-target effects. They offer enhanced potency, selectivity, and the ability to combat resistance compared to traditional inhibitors. PROTACs hold promise for brain tumor treatment offering advantages over traditional inhibitors, but more research is needed to refine their mechanisms, efficacy, and safety. Larger-scale trials and translational studies are essential for assessing their clinical utility.
Insights
Proteolysis Targeting Chimeras (PROTACs) offer a novel therapeutic approach for brain tumors by selectively degrading target proteins. This advanced method shows promise in overcoming drug resistance and enhancing treatment efficacy compared to traditional inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Malignancies, especially brain tumors, present treatment challenges due to abnormal protein expression and drug resistance.
- Traditional inhibitors often fall short in potency, selectivity, and overcoming acquired resistance.
- Proteolysis Targeting Chimeras (PROTACs) represent an innovative therapeutic modality for targeted protein degradation.
Purpose of the Study:
- To review recent advancements in the application of PROTACs for brain tumor therapy.
- To elucidate the mechanism, benefits, and limitations of PROTACs in this context.
- To identify areas requiring further optimization for clinical translation.
Main Methods:
- Comprehensive literature search of peer-reviewed articles, scientific databases, and clinical trial registries.
- Inclusion of preclinical and early clinical studies on PROTAC-based brain tumor therapies up to April 2023.
- Narrative synthesis of findings from in vitro, in vivo, and human subject studies targeting brain tumor progression proteins.
Main Results:
- PROTACs demonstrate selective degradation of brain tumor-associated proteins with minimal off-target effects.
- PROTACs exhibit superior potency and selectivity over conventional inhibitors.
- The technology shows potential in overcoming existing drug resistance mechanisms in brain tumors.
Conclusions:
- PROTACs hold significant promise as a therapeutic strategy for brain tumors, offering advantages over traditional inhibitors.
- Further research is crucial to optimize PROTAC mechanisms, efficacy, and safety profiles.
- Larger clinical trials and translational studies are necessary to establish the clinical utility of PROTACs for brain tumors.
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