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Targeting Multiple Signaling Pathways in Cancer: The Rutin Therapeutic Approach
Zeinab Nouri1, Sajad Fakhri2, Keyvan Nouri3
1Student Research Committee, Faculty of Pharmacy, Kermanshah University of Medical Sciences, Kermanshah 6714415153, Iran.
Abstract:
Multiple dysregulated signaling pathways are implicated in the pathogenesis of cancer. The conventional therapies used in cancer prevention/treatment suffer from low efficacy, considerable toxicity, and high cost. Hence, the discovery and development of novel multi-targeted agents to attenuate the dysregulated signaling in cancer is of great importance. In recent decades, phytochemicals from dietary and medicinal plants have been successfully introduced as alternative anticancer agents due to their ability to modulate numerous oncogenic and oncosuppressive signaling pathways. Rutin (also known as rutoside, quercetin-3-O-rutinoside and sophorin) is an active plant-derived flavonoid that is widely distributed in various vegetables, fruits, and medicinal plants, including asparagus, buckwheat, apricots, apples, cherries, grapes, grapefruit, plums, oranges, and tea. Rutin has been shown to target various inflammatory, apoptotic, autophagic, and angiogenic signaling mediators, including nuclear factor-κB, tumor necrosis factor-α, interleukins, light chain 3/Beclin, B cell lymphoma 2 (Bcl-2), Bcl-2 associated X protein, caspases, and vascular endothelial growth factor. A comprehensive and critical analysis of the anticancer potential of rutin and associated molecular targets amongst various cancer types has not been performed previously. Accordingly, the purpose of this review is to present an up-to-date and critical evaluation of multiple cellular and molecular mechanisms through which the anticancer effects of rutin are known to be exerted. The current challenges and limitations as well as future directions of research are also discussed.
Insights
Rutin, a plant-derived flavonoid, shows promise as a multi-targeted anticancer agent by modulating key signaling pathways involved in cancer. Further research is needed to explore its full therapeutic potential and overcome current limitations.
Area of Science:
- * Oncology
- * Pharmacology
- * Phytochemistry
Background:
- * Cancer pathogenesis involves multiple dysregulated signaling pathways.
- * Conventional cancer therapies have limitations in efficacy, toxicity, and cost.
- * Phytochemicals offer alternative multi-targeted agents for cancer treatment.
Purpose of the Study:
- * To critically evaluate the anticancer potential of rutin.
- * To analyze the molecular targets and mechanisms of rutin's anticancer effects.
- * To discuss challenges and future research directions for rutin in cancer therapy.
Main Methods:
- * Comprehensive literature review of studies on rutin's anticancer properties.
- * Analysis of rutin's modulation of signaling pathways (e.g., NF-κB, Bcl-2, VEGF).
- * Examination of rutin's effects across various cancer types.
Main Results:
- * Rutin targets multiple signaling mediators involved in inflammation, apoptosis, autophagy, and angiogenesis.
- * Identified targets include NF-κB, TNF-α, Bcl-2 family proteins, caspases, and VEGF.
- * Rutin demonstrates broad anticancer potential through diverse molecular mechanisms.
Conclusions:
- * Rutin is a promising phytochemical with significant multi-targeted anticancer activity.
- * Further research is warranted to optimize rutin-based cancer therapies.
- * Challenges and future directions include clinical translation and understanding resistance mechanisms.
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