Abstract
Aspirin, a non-steroidal anti-inflammatory drug (NSAID), has garnered significant attention for its anti-cancer potential. This review explores the pharmacological properties, chemical dynamics, and evolving therapeutic applications of aspirin, with an emphasis on its integration into advanced cancer therapies. Aspirin demonstrates broad-spectrum efficacy across diverse cancer types by modulating signaling pathways such as COX-dependent and COX-independent mechanisms, including Wnt, NF-κB, β-catenin/ TCF, and IL-6/STAT3. Recent advancements highlight the role of nanotechnology in enhancing aspirin’s targeted delivery, therapeutic effectiveness, and patient outcomes. Nanoparticle-based formulations, including liposomes, solid lipid nanoparticles, and mesoporous silica nanoparticles, offer improved solubility, stability, and bioavailability, enabling controlled drug release and tumor-specific targeting. These innovations reduce systemic toxicity and enhance therapeutic effects, paving the way for aspirin’s integration into personalized cancer treatments. Ongoing clinical studies reinforce its safety profile, underscoring aspirin’s role in cancer pharma-cotherapy. This review calls for continued research into aspirin’s repurposing in combination therapies and novel delivery systems to maximize its therapeutic potential.
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Laila, U. E., Zhao, Z. L., Liu, H., & Xu, Z. X. (2025). Aspirin in Cancer Therapy: Pharmacology and Nanotechnology Advances. International Journal of Nanomedicine. Dove Medical Press Ltd. https://doi.org/10.2147/IJN.S505636
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