Advances in Dietary Phenolic Compounds to Improve Chemosensitivity of Anticancer Drugs

Abdelhakim Bouyahya1, Nasreddine El Omari2, Saad Bakrim3

  • 1Laboratory of Human Pathologies Biology, Department of Biology, Faculty of Sciences, Mohammed V University, Rabat 10106, Morocco.

Cancers
|October 14, 2022
PubMed

Insights

Natural phenolic compounds from medicinal plants can enhance chemotherapy effectiveness by sensitizing cancer cells to drugs, overcoming resistance mechanisms like metabolic reprogramming and mitochondrial damage.

Area of Science:

  • Oncology
  • Pharmacology
  • Natural Product Chemistry

Background:

  • Cancer recurrence is high due to tumor cell resistance to chemotherapy.
  • Chemoresistance involves mechanisms like altered glucose metabolism, mitochondrial damage, and lysosome dysfunction.
  • Combining therapeutic agents can decrease resistance and improve efficacy.

Purpose of the Study:

  • To review recent advances in using natural phenolic compounds to sensitize cancer cells to chemotherapy.
  • To explore the application of these compounds in combination with conventional anticancer drugs.
  • To highlight their role in improving therapeutic effectiveness and index.

Main Methods:

  • Review of scientific literature on natural bioactive molecules, specifically phenolic compounds.
  • Analysis of mechanisms by which phenolic compounds sensitize cancer cells.
  • Examination of their synergistic effects with conventional chemotherapeutic agents.

Main Results:

  • Dietary phenolic compounds (e.g., resveratrol, curcumin) show anticancer activities via multiple mechanisms.
  • These compounds increase the sensitivity of various human cancers to chemotherapeutic drugs.
  • They enhance the effectiveness and therapeutic index of existing anticancer agents.

Conclusions:

  • Natural phenolic compounds offer a promising strategy to overcome cancer chemoresistance.
  • Combination therapy with these compounds and conventional drugs can improve treatment outcomes.
  • Further research into their complex mechanisms, including signaling pathways and epigenetic effects, is warranted.

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