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Cancer Prevention02:59

Cancer Prevention

Several factors can increase the risk of cancer in an individual. About 50% of cancer cases can be prevented by adopting a healthy lifestyle, regular exercise, eating healthy, and following a modest cancer prevention diet. Epidemiological studies have consistently shown that populations with vegetable and fruit-rich diets have reduced the incidence of cancer. On the other hand, populations who have a diet rich in animal fat, red meat, junk food, or high calories are predisposed to cancer.
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Related Experiment Video

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Modern Developing Directions in the Dihydroquercetin Study.

Svetlana Yu Filippovich1, Elena P Isakova1, Galina P Bachurina1

  • 1A.N. Bach Institute of Biochemistry, Research Center of Biotechnology of the Russian Academy of Sciences, Leninsky Ave. 33/2, 119071 Moscow, Russia.

Molecules (Basel, Switzerland)
|November 13, 2025
PubMed
Summary

Dihydroquercetin (taxifolin), a natural flavonoid, shows antioxidant, anti-inflammatory, and antimicrobial properties. Nanotechnology enhances its delivery, improving its potential for pharmaceutical and biomedical uses.

Keywords:
antiageantibacterialantiviralbioavailabilitydihydroquercetinnanotechnologysolubility

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Area of Science:

  • Natural product chemistry
  • Pharmacology
  • Nanotechnology

Background:

  • Dihydroquercetin (taxifolin) is a natural bioflavonoid with broad biological activities.
  • Its therapeutic potential is hindered by low solubility and limited bioavailability.

Purpose of the Study:

  • To review current research on dihydroquercetin's structure, properties, and biological functions.
  • To systematize nanotechnology-based delivery systems for dihydroquercetin.
  • To explore its antibacterial and antiviral mechanisms and therapeutic promise.

Main Methods:

  • Literature review focusing on structural features, physicochemical properties, and biological activities.
  • Systematization of various nanotechnology-based delivery systems (nanoparticles, liposomes, etc.).
  • Analysis of recent findings on molecular mechanisms and therapeutic applications.

Main Results:

  • Dihydroquercetin exhibits antioxidant, anti-inflammatory, antibacterial, antiviral, and geroprotective effects.
  • Nanotechnology-based systems (nanoparticles, liposomes, hydrogels, etc.) are developed to overcome solubility and bioavailability issues.
  • Molecular mechanisms involve regulating oxidative stress and cellular signaling pathways.

Conclusions:

  • Dihydroquercetin shows significant therapeutic promise for pharmaceutical and biomedical applications.
  • Further comprehensive investigations are required to fully realize its potential.
  • Nanotechnology-based delivery systems are crucial for enhancing its efficacy.