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Published on: November 20, 2012
Integrin Signaling in Glioma Pathogenesis: From Biology to Therapy
Aleksandra Ellert-Miklaszewska1, Katarzyna Poleszak1, Maria Pasierbinska1
1Laboratory of Molecular Neurobiology, Neurobiology Center, Nencki Institute of Experimental Biology of the Polish Academy of Sciences, 02-093 Warsaw, Poland.
Abstract:
Integrins are a large family of transmembrane adhesion receptors, which play a key role in interactions of a cell with the surrounding stroma. Integrins are comprised of non-covalently linked α and β chains, which form heterodimeric receptor complexes. The signals from integrin receptors are combined with those originating from growth factor receptors and participate in orchestrating morphological changes of cells, organization of the cytoskeleton, stimulation of cell proliferation and rescuing cells from programmed cell death induced by extracellular matrix (ECM) detachment. Upon binding to specific ligands or ECM components, integrin dimers activate downstream signaling pathways, including focal adhesion kinase, phosphoinositide-3-kinase (PI3K) and AKT kinases, which regulate migration, invasion, proliferation and survival. Expression of specific integrins is upregulated in both tumor cells and stromal cells in a tumor microenvironment. Therefore, integrins became an attractive therapeutic target for many cancers, including the most common primary brain tumors-gliomas. In this review we provide an overview of the involvement of integrin signaling in glioma pathogenesis, formation of the tumor niche and brain tissue infiltration. We will summarize up-to-date therapeutic strategies for gliomas focused on interference with integrin ligand-receptor signaling.
Insights
Integrins are key cell adhesion receptors involved in cancer, particularly gliomas. Targeting integrin signaling pathways offers a promising therapeutic strategy for treating these aggressive brain tumors.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Integrins are transmembrane adhesion receptors crucial for cell-stroma interactions.
- They form heterodimeric complexes of alpha and beta chains, integrating signals with growth factor receptors.
- Integrin signaling regulates cell morphology, cytoskeleton, proliferation, and survival, preventing apoptosis upon ECM detachment.
Purpose of the Study:
- To review the role of integrin signaling in glioma pathogenesis and tumor microenvironment.
- To summarize current therapeutic strategies targeting integrin-ligand-receptor interactions in gliomas.
Main Methods:
- Literature review of integrin signaling pathways in cancer.
- Analysis of integrin expression in glioma cells and the tumor microenvironment.
- Overview of therapeutic approaches targeting integrin signaling.
Main Results:
- Integrin signaling pathways, including FAK, PI3K, and AKT, are activated by ligand binding and regulate key cellular processes.
- Upregulated integrin expression is observed in both glioma and stromal cells within the tumor microenvironment.
- Integrins are implicated in glioma cell migration, invasion, proliferation, and infiltration of brain tissue.
Conclusions:
- Integrins play a significant role in glioma development, niche formation, and invasion.
- Targeting integrin signaling presents a viable therapeutic avenue for glioma treatment.
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