Unveiling Novel Avenues in mTOR-Targeted Therapeutics: Advancements in Glioblastoma Treatment

Author:

Singh Shilpi1,Barik Debashis2,Lawrie Karl3,Mohapatra Iteeshree4,Prasad Sujata5,Naqvi Afsar R.6,Singh Amar7,Singh Gatikrushna1ORCID

Affiliation:

1. Department of Neurosurgery, University of Minnesota, Minneapolis, MN 55455, USA

2. Center for Computational Natural Science and Bioinformatics, International Institute of Information Technology, Hyderabad 500032, India

3. College of Saint Benedict, Saint John’s University, Collegeville, MN 56321, USA

4. Department of Veterinary and Biomedical Sciences, University of Minnesota, Saint Paul, MN 55108, USA

5. MLM Medical Laboratories, LLC, Oakdale, MN 55128, USA

6. Department of Periodontics, College of Dentistry, University of Illinois, Chicago, IL 60612, USA

7. Schulze Diabetes Institute, Department of Surgery, University of Minnesota, Minneapolis, MN 55455, USA

Abstract

The mTOR signaling pathway plays a pivotal and intricate role in the pathogenesis of glioblastoma, driving tumorigenesis and proliferation. Mutations or deletions in the PTEN gene constitutively activate the mTOR pathway by expressing growth factors EGF and PDGF, which activate their respective receptor pathways (e.g., EGFR and PDGFR). The convergence of signaling pathways, such as the PI3K-AKT pathway, intensifies the effect of mTOR activity. The inhibition of mTOR has the potential to disrupt diverse oncogenic processes and improve patient outcomes. However, the complexity of the mTOR signaling, off-target effects, cytotoxicity, suboptimal pharmacokinetics, and drug resistance of the mTOR inhibitors pose ongoing challenges in effectively targeting glioblastoma. Identifying innovative treatment strategies to address these challenges is vital for advancing the field of glioblastoma therapeutics. This review discusses the potential targets of mTOR signaling and the strategies of target-specific mTOR inhibitor development, optimized drug delivery system, and the implementation of personalized treatment approaches to mitigate the complications of mTOR inhibitors. The exploration of precise mTOR-targeted therapies ultimately offers elevated therapeutic outcomes and the development of more effective strategies to combat the deadliest form of adult brain cancer and transform the landscape of glioblastoma therapy.

Funder

Medical School, University of Minnesota

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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1. Chloroquine and Chemotherapeutic Compounds in Experimental Cancer Treatment;International Journal of Molecular Sciences;2024-01-12

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