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Rutin (Bioflavonoid) as Cell Signaling Pathway Modulator: Prospects in Treatment and Chemoprevention
Pratibha Pandey1, Fahad Khan1, Huda A Qari2
1Department of Biotechnology, Noida Institute of Engineering and Technology, 19, Knowledge Park-II, Institutional Area, Greater Noida 201306, India.
Abstract:
Cancer is a complex ailment orchestrated by numerous intrinsic and extrinsic pathways. Recent research has displayed a deep interest in developing plant-based cancer therapeutics for better management of the disease and limited side effects. A wide range of plant-derived compounds have been reported for their anticancer potential in the quest of finding an effective therapeutic approach. Rutin (vitamin P) is a low-molecular weight flavonoid glycoside (polyphenolic compound), abundantly present in various vegetables, fruits (especially berries and citrus fruits), and medicinal herbs. Numerous studies have delineated several pharmacological properties of rutin such as its antiprotozoal, antibacterial, anti-inflammatory, antitumor, antiviral, antiallergic, vasoactive, cytoprotective, antispasmodic, hypolipidemic, antihypertensive, and antiplatelet properties. Specifically, rutin-mediated anticancerous activities have been reported in several cancerous cell lines, but the most common scientific evidence, encompassing several molecular processes and interactions, including apoptosis pathway regulation, aberrant cell signaling pathways, and oncogenic genes, has not been thoroughly studied. In this direction, we attempted to project rutin-mediated oncogenic pathway regulation in various carcinomas. Additionally, we also incorporated advanced research that has uncovered the notable potential of rutin in the modulation of several key cellular functions via interaction with mRNAs, with major emphasis on elucidating direct miRNA targets of rutin as well as the process needed to transform these approaches for developing novel therapeutic interventions for the treatment of several cancers.
Insights
Rutin, a plant-derived flavonoid, shows anticancer potential by regulating oncogenic pathways and interacting with mRNA. Further research aims to develop novel cancer therapeutics based on rutin
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Cancer involves complex intrinsic and extrinsic pathways.
- Plant-derived compounds are explored for cancer therapeutics due to fewer side effects.
- Rutin (vitamin P), a flavonoid glycoside, possesses diverse pharmacological properties, including antitumor effects.
Purpose of the Study:
- To investigate rutin-mediated regulation of oncogenic pathways in various carcinomas.
- To explore rutin's interaction with messenger RNAs (mRNAs) for potential therapeutic applications.
- To identify direct microRNA (miRNA) targets of rutin for novel cancer treatment strategies.
Main Methods:
- Review of existing scientific literature on rutin's anticancer activities.
- Analysis of molecular mechanisms underlying rutin's effects on cancer cells.
- Exploration of rutin's interactions with mRNA and miRNA pathways.
Main Results:
- Rutin exhibits anticancer activities by modulating apoptosis, cell signaling, and oncogenic genes.
- Rutin interacts with mRNAs, influencing key cellular functions.
- Potential for rutin to be developed into novel therapeutic interventions for cancer treatment.
Conclusions:
- Rutin demonstrates significant potential in regulating cancer-related molecular pathways.
- Rutin's interaction with mRNA and miRNA offers a promising avenue for developing new cancer therapies.
- Further research is warranted to translate these findings into clinical applications.
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