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.

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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