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Flavonoids nanoparticles in cancer: Treatment, prevention and clinical prospects
Haroon Khan1, Hammad Ullah1, Miquel Martorell2
1Department of Pharmacy, Abdul Wali Khan University, Mardan, 23200, Pakistan; Novel Global Community Educational Foundation, Australia.
Abstract:
The conventional therapies for cancer have a major concern of poor accessibility to tumor tissues. Furthermore, the requirement of higher doses and non-selective nature of therapeutic are associated with a range of adverse drug reactions (ADRs). However, flavonoids are documented to be effective against various types of cancer, but they are not evaluated for their safety profile and tumor site-specific action. Low solubility, rapid metabolism and poor absorption of dietary flavonoids in gastrointestinal tract hinder their pharmacological potential. Some studies have also suggested that flavonoids may act as pro-oxidant in some cases and may interact with other therapeutic agents, especially through biotransformation. Nanocarriers can alter pharmacokinetics and pharmacodynamic profile of incorporating drug. Moreover, nanocarriers are designed for targeted drug delivery, improving the bioavailability of poorly water-soluble drugs, delivery of macromolecules to site of action within the cell, combining therapeutic agents with imaging techniques which may visualize the site of drug delivery and co-delivery of two or more drugs. Combining two or more anti-cancer agents can reduce ADRs and nanotechnology played a pivotal role in this regard. In vitro and in vivo studies have shown the potential of flavonoids nano-formulations, especially quercetin, naringenin, apigenin, catechins and fisetin in the prevention and treatment of several types of cancer. Similarly, clinical trials have been conducted using flavonoids alone or in combination, however, the nano-formulations effect still needs to be elucidated. This review focuses on the impact of flavonoids nano-formulations on the improvement of their bioavailability, therapeutic and safety profile and will open new insights in the field of drug discovery for cancer therapeutics.
Insights
Flavonoid nano-formulations enhance cancer treatment by improving drug delivery and safety. This approach addresses limitations of conventional therapies, offering better bioavailability and targeted action against tumors.
Area of Science:
- * Pharmacology and Nanotechnology
- * Cancer Therapeutics and Drug Delivery
Background:
- * Conventional cancer therapies face challenges with tumor accessibility, high dosage requirements, and adverse drug reactions (ADRs).
- * Dietary flavonoids show anti-cancer potential but suffer from poor solubility, absorption, and lack of safety/targeting data.
- * Nanocarriers offer solutions for drug delivery, improving pharmacokinetics, bioavailability, and enabling targeted or combined therapies.
Purpose of the Study:
- * To review the impact of flavonoid nano-formulations on bioavailability, therapeutic efficacy, and safety in cancer treatment.
- * To explore the potential of nanotechnology in overcoming flavonoid limitations for improved cancer drug discovery.
Main Methods:
- * Comprehensive literature review of in vitro and in vivo studies on flavonoid nano-formulations.
- * Analysis of clinical trial data on flavonoids in cancer therapy.
- * Focus on specific flavonoids like quercetin, naringenin, apigenin, catechins, and fisetin.
Main Results:
- * Flavonoid nano-formulations demonstrate potential in preventing and treating various cancers.
- * Nanocarriers improve bioavailability and can facilitate targeted drug delivery and combination therapy.
- * Studies indicate enhanced therapeutic and safety profiles for nano-formulated flavonoids.
Conclusions:
- * Flavonoid nano-formulations represent a promising strategy to improve cancer therapeutics.
- * Further elucidation of nano-formulations' effects is crucial for advancing drug discovery.
- * This approach offers new insights into developing safer and more effective cancer treatments.
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