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Published on: October 27, 2014
Integrin-αvβ3 as a Therapeutic Target in Glioblastoma: Back to the Future?
William Echavidre1, Vincent Picco1, Marc Faraggi2
1Département de Biologie Médicale, Centre Scientifique de Monaco, 98000 Monaco, Monaco.
Abstract:
Glioblastoma (GBM), the most common primary malignant brain tumor, is associated with a dismal prognosis. Standard therapies including maximal surgical resection, radiotherapy, and temozolomide chemotherapy remain poorly efficient. Improving GBM treatment modalities is, therefore, a paramount challenge for researchers and clinicians. GBMs exhibit the hallmark feature of aggressive invasion into the surrounding tissue. Among cell surface receptors involved in this process, members of the integrin family are known to be key actors of GBM invasion. Upregulation of integrins was reported in both tumor and stromal cells, making them a suitable target for innovative therapies targeting integrins in GBM patients, as their impairment disrupts tumor cell proliferation and invasive capacities. Among them, integrin-αvβ3 expression correlates with high-grade GBM. Driven by a plethora of preclinical biological studies, antagonists of αvβ3 rapidly became attractive therapeutic candidates to impair GBM tumorigenesis. In this perspective, the advent of nuclear medicine is currently one of the greatest components of the theranostic concept in both preclinical and clinical research fields. In this review, we provided an overview of αvβ3 expression in GBM to emphasize the therapeutic agents developed. Advanced current and future developments in the theranostic field targeting αvβ3 are finally discussed.
Insights
Glioblastoma (GBM) treatment is challenging. Targeting integrin-αvβ3, a key molecule in GBM invasion, offers a promising theranostic approach for improved patient outcomes.
Area of Science:
- Neuro-oncology
- Molecular biology
- Medical imaging
Background:
- Glioblastoma (GBM) is an aggressive brain tumor with poor prognosis.
- Standard treatments like surgery, radiotherapy, and chemotherapy show limited efficacy.
- GBM's invasive nature necessitates novel therapeutic strategies.
Purpose of the Study:
- To review the role of integrin-αvβ3 in GBM invasion and tumorigenesis.
- To highlight therapeutic agents targeting integrin-αvβ3.
- To discuss the theranostic applications of targeting integrin-αvβ3 in GBM.
Main Methods:
- Literature review of preclinical and clinical studies on integrin-αvβ3 in GBM.
- Analysis of therapeutic strategies targeting integrin-αvβ3.
- Exploration of theranostic concepts in GBM treatment.
Main Results:
- Integrin-αvβ3 is upregulated in high-grade GBM and promotes invasion.
- Integrin-αvβ3 antagonists show therapeutic potential by disrupting GBM proliferation and invasion.
- Nuclear medicine-based theranostics targeting integrin-αvβ3 are emerging.
Conclusions:
- Targeting integrin-αvβ3 represents a promising strategy for GBM therapy.
- Theranostic approaches combining diagnostics and therapeutics hold significant potential for GBM management.
- Further research into integrin-αvβ3-targeted agents and theranostics is warranted.
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