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Nanoparticles for Drug and Gene Delivery in Pediatric Brain Tumors' Cancer Stem Cells: Current Knowledge and Future
Luana Abballe1, Zaira Spinello2, Celeste Antonacci1
1Department of Pediatric Hematology/Oncology and Cellular and Gene Therapy, Bambino Gesù Children's Hospital, IRCCS, 00165 Rome, Italy.
Abstract:
Primary malignant brain tumors are the most common solid neoplasm in childhood. Despite recent advances, many children affected by aggressive or metastatic brain tumors still present poor prognosis, therefore the development of more effective therapies is urgent. Cancer stem cells (CSCs) have been discovered and isolated in both pediatric and adult patients with brain tumors (e.g., medulloblastoma, gliomas and ependymoma). CSCs are a small clonal population of cancer cells responsible for brain tumor initiation, maintenance and progression, displaying resistance to conventional anticancer therapies. CSCs are characterized by a specific repertoire of surface markers and intracellular specific pathways. These unique features of CSCs biology offer the opportunity to build therapeutic approaches to specifically target these cells in the complex tumor bulk. Treatment of pediatric brain tumors with classical chemotherapeutic regimen poses challenges both for tumor location and for the presence of the blood-brain barrier (BBB). Lastly, the application of chemotherapy to a developing brain is followed by long-term sequelae, especially on cognitive abilities. Novel avenues are emerging in the therapeutic panorama taking advantage of nanomedicine. In this review we will summarize nanoparticle-based approaches and the efficacy that NPs have intrinsically demonstrated and how they are also decorated by biomolecules. Furthermore, we propose novel cargoes together with recent advances in nanoparticle design/synthesis with the final aim to specifically target the insidious CSCs population in the tumor bulk.
Insights
Pediatric brain tumors are challenging to treat due to cancer stem cells (CSCs) and the blood-brain barrier. Nanomedicine offers novel nanoparticle-based therapies to specifically target these resistant CSCs, improving treatment efficacy.
Area of Science:
- Pediatric oncology
- Nanomedicine
- Cancer biology
Background:
- Primary malignant brain tumors are the most common childhood solid neoplasm.
- Aggressive or metastatic pediatric brain tumors have a poor prognosis, necessitating novel therapies.
- Cancer stem cells (CSCs) drive tumor initiation, progression, and therapy resistance in pediatric brain tumors.
Purpose of the Study:
- To review nanoparticle-based therapeutic approaches for pediatric brain tumors.
- To explore the potential of nanomedicine in targeting cancer stem cells (CSCs).
- To discuss advancements in nanoparticle design and biomolecular decoration for targeted therapy.
Main Methods:
- Literature review of nanoparticle-based therapies for brain tumors.
- Analysis of CSC characteristics and targeting strategies.
- Exploration of novel nanoparticle cargoes and design advancements.
Main Results:
- Nanoparticles show intrinsic efficacy and can be functionalized with biomolecules for targeted delivery.
- Nanomedicine offers a promising strategy to overcome challenges like the blood-brain barrier (BBB) and chemotherapy side effects.
- Targeting CSCs with nanoparticles presents a novel therapeutic avenue for pediatric brain tumors.
Conclusions:
- Nanoparticle-based approaches hold significant potential for treating pediatric brain tumors, especially by targeting CSCs.
- Biomolecular decoration and advanced nanoparticle design can enhance therapeutic specificity and efficacy.
- Nanomedicine provides a promising alternative to conventional chemotherapy, mitigating long-term sequelae in developing brains.
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