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Targeting Glioblastoma with the Use of Phytocompounds and Nanoparticles
Francesca Pistollato1,2, Susanne Bremer-Hoffmann3, Giuseppe Basso1
1Oncohematology Laboratory, Department of Woman and Child Health, University of Padova, Padova, Italy.
Abstract:
Glioblastoma multiforme (GBM) are extremely lethal and still poorly treated primary brain tumors, characterized by the presence of highly tumorigenic cancer stem cell (CSC) subpopulations, considered responsible for tumor relapse. In order to successfully eradicate GBM growth and recurrence, new anti-cancer strategies selectively targeting CSCs should be designed. CSCs might be eradicated by targeting some of their cell surface markers and transporters, inducing their differentiation, impacting their hyper-glycolytic metabolism, inhibiting CSC-related signaling pathways and/or by targeting their microenvironmental niche. In this regard, phytocompounds such as curcumin, isothiocyanates, resveratrol and epigallocatechin-3-gallate have been shown to prevent or reverse cancer-related epigenetic dysfunctions, reducing tumorigenesis, preventing metastasis and/or increasing chemotherapy and radiotherapy efficacy. However, the actual bioavailability and metabolic processing of phytocompounds is generally unknown, and the presence of the blood brain barrier often represents a limitation to glioma treatments. Nowadays, nanoparticles (NPs) can be loaded with therapeutic compounds such as phytochemicals, improving their bioavailability and their targeted delivery within the GBM tumor bulk. Moreover, NPs can be designed to increase their tropism and specificity toward CSCs by conjugating their surface with antibodies specific for CSC antigens, with ligands or with glucose analogues. Here we discuss the use of phytochemicals as anti-glioma agents and the applicability of phytochemical-loaded NPs as drug delivery systems to target GBM. Additionally, we provide some examples on how NPs can be specifically formulated to improve CSC targeting.
Insights
Phytochemicals show promise against glioblastoma multiforme (GBM) by targeting cancer stem cells (CSCs). Nanoparticles enhance phytochemical delivery, offering a new strategy to combat this lethal brain tumor.
Area of Science:
- Oncology
- Nanotechnology
- Pharmacology
Background:
- Glioblastoma multiforme (GBM) is a lethal brain tumor driven by cancer stem cells (CSCs), which cause tumor recurrence.
- Current treatments are insufficient, necessitating novel strategies that specifically target CSCs.
- Phytochemicals exhibit anti-cancer properties, but their clinical application is limited by poor bioavailability and the blood-brain barrier.
Purpose of the Study:
- To explore the potential of phytochemicals as anti-glioma agents.
- To discuss the use of nanoparticle (NP) drug delivery systems for targeting GBM and CSCs.
- To highlight strategies for formulating NPs to enhance CSC targeting.
Main Methods:
- Review of existing literature on phytochemicals, GBM, CSCs, and nanotechnology.
- Discussion of mechanisms by which phytochemicals target CSCs (e.g., epigenetic modification, metabolism).
- Exploration of NP-based drug delivery strategies for improved bioavailability and targeted delivery of phytochemicals to GBM.
Main Results:
- Phytochemicals like curcumin and resveratrol can impact CSCs, potentially reducing tumorigenesis and enhancing treatment efficacy.
- Nanoparticles can encapsulate phytochemicals, improving their delivery across the blood-brain barrier and into GBM tumors.
- Surface modification of NPs with specific ligands or antibodies can enhance their targeting of CSCs.
Conclusions:
- Phytochemicals hold therapeutic potential against GBM, particularly when delivered via advanced systems.
- Phytochemical-loaded nanoparticles offer a promising strategy to overcome bioavailability and targeting challenges in GBM treatment.
- Targeted NP design is crucial for effectively eradicating CSCs and preventing GBM recurrence.

