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A Real-time Potency Assay for Chimeric Antigen Receptor T Cells Targeting Solid and Hematological Cancer Cells
Published on: November 12, 2019
Targeting Integrins for Cancer Therapy - Disappointments and Opportunities
Cecilia Bergonzini1, Kim Kroese1, Annelien J M Zweemer1
1Leiden Academic Center for Drug Research, Leiden University, Leiden, Netherlands.
Abstract:
Integrins mediate adhesive interactions between cells and their environment, including neighboring cells and extracellular matrix (ECM). These heterodimeric transmembrane receptors bind extracellular ligands with their globular head domains and connect to the cytoskeleton through multi-protein interactions at their cytoplasmic tails. Integrin containing cell-matrix adhesions are dynamic force-responsive protein complexes that allow bidirectional mechanical coupling of cells with their environment. This allows cells to sense and modulate tissue mechanics and regulates intracellular signaling impacting on cell faith, survival, proliferation, and differentiation programs. Dysregulation of these functions has been extensively reported in cancer and associated with tumor growth, invasion, angiogenesis, metastasis, and therapy resistance. This central role in multiple hallmarks of cancer and their localization on the cell surface makes integrins attractive targets for cancer therapy. However, despite a wealth of highly encouraging preclinical data, targeting integrin adhesion complexes in clinical trials has thus far failed to meet expectations. Contributing factors to therapeutic failure are 1) variable integrin expression, 2) redundancy in integrin function, 3) distinct roles of integrins at various disease stages, and 4) sequestering of therapeutics by integrin-containing tumor-derived extracellular vesicles. Despite disappointing clinical results, new promising approaches are being investigated that highlight the potential of integrins as targets or prognostic biomarkers. Improvement of therapeutic delivery at the tumor site via integrin binding ligands is emerging as another successful approach that may enhance both efficacy and safety of conventional therapeutics. In this review we provide an overview of recent encouraging preclinical findings, we discuss the apparent disagreement between preclinical and clinical results, and we consider new opportunities to exploit the potential of integrin adhesion complexes as targets for cancer therapy.
Insights
Integrins are key cell adhesion receptors crucial in cancer. While promising preclinical results show potential for integrin-targeted cancer therapies, clinical trials have faced challenges due to various factors.
Area of Science:
- Cell Biology
- Biochemistry
- Oncology
Background:
- Integrins are transmembrane receptors mediating cell adhesion to the extracellular matrix (ECM) and other cells.
- These receptors form dynamic, force-responsive complexes that link the cell exterior to the cytoskeleton, influencing cell signaling, survival, and differentiation.
- Dysregulated integrin function is implicated in multiple cancer hallmarks, including growth, invasion, angiogenesis, metastasis, and therapy resistance.
Purpose of the Study:
- To review recent preclinical findings on targeting integrin adhesion complexes in cancer therapy.
- To discuss the reasons for the discrepancy between preclinical and clinical trial outcomes.
- To explore novel strategies for exploiting integrin adhesion complexes as therapeutic targets or prognostic biomarkers in cancer.
Main Methods:
- Literature review of preclinical studies and clinical trial data.
- Analysis of factors contributing to therapeutic failure.
- Discussion of emerging therapeutic approaches and delivery strategies.
Main Results:
- Integrins are attractive cancer targets due to their cell surface localization and role in cancer progression.
- Clinical trials targeting integrin adhesion complexes have yielded disappointing results attributed to variable expression, functional redundancy, stage-specific roles, and drug sequestration by extracellular vesicles.
- New strategies, including improved therapeutic delivery via integrin-binding ligands, show promise for enhancing efficacy and safety.
Conclusions:
- Despite clinical setbacks, integrins remain important targets and potential biomarkers in oncology.
- Addressing challenges like drug delivery and understanding integrin heterogeneity is crucial for future therapeutic success.
- Exploiting integrin adhesion complexes offers new opportunities for innovative cancer treatments.
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