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Brain-targeted Nano-architectures for Efficient Drug Delivery and Sensitization in Glioblastoma
Jeswanthi Aishwarya Vibhavari Ravuluri1, Vanishree Rao1, Gautam Kumar1,2
1Department of Pharmacology, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal 576104, Karnataka, India.
Abstract:
Due to ineffective diagnosis and analysis, glioblastoma multiforme (GBM), is still the most aggressive form of all cancers. Standard therapy for GBM comprises resection surgery following chemo and radiotherapy, which offers less efficacious treatment to the malignant nature of glioma. Several treatment strategies involving gene therapy, immunotherapy, and angiogenesis inhibition have been employed recently as alternative therapeutics. The main drawback of chemotherapy is resistance, which is mainly due to the enzymes involved in the therapeutic pathways. Our objective is to provide a clear insight into various nano-architectures used in the sensitization of GBM and their importance in drug delivery and bioavailability. This review includes the overview and summary of articles from Pubmed and Scopus search engines. The present era's synthetic and natural drugs used in the treatment of GBM are facing poor Blood Brain Barrier (BBB) permeability issues due to greater particle size. This problem can be resolved by using the nanostructures that showcase high specificity to cross the BBB with their nano-scale size and broader surface area. Nano-architectures act as promising tools for effective brain-targeted drug delivery at a concentration well below the final dose of free drug, thus resulting in safe therapeutic effects and reversal of chemoresistance. The present review focuses on the mechanisms involved in the resistance of glioma cells to chemotherapeutic agents, nano-pharmacokinetics, diverse types of nano-architectures used for potent delivery of the medicine and sensitization in GBM, their recent clinical advances, potential challenges, and future perspective.
Insights
Nano-architectures offer a promising solution for glioblastoma multiforme (GBM) treatment by enhancing drug delivery and overcoming chemoresistance. These nanostructures effectively cross the Blood Brain Barrier (BBB), improving therapeutic outcomes for aggressive brain cancers.
Area of Science:
- Oncology
- Nanotechnology
- Pharmacology
Background:
- Glioblastoma multiforme (GBM) is an aggressive brain cancer with limited treatment efficacy using standard therapies like surgery, chemotherapy, and radiotherapy.
- Chemotherapy resistance, often due to specific enzymes, and poor Blood Brain Barrier (BBB) penetration of drugs are major challenges in GBM treatment.
Conclusions:
- Nano-architectures represent a significant advancement in GBM treatment, offering improved drug delivery, BBB penetration, and reversal of chemoresistance.
- Further research into nano-architectures holds potential for overcoming current therapeutic limitations in aggressive brain cancers like GBM.
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