A comprehensive review on Ellagic acid in breast cancer treatment: From cellular effects to molecular mechanisms of action

Author:

Golmohammadi Maryam1,Zamanian Mohammad Yasin23ORCID,Jalal Sahbanathul Missiriya4,Noraldeen Sara Abdalrazzaq M.5,Ramírez‐Coronel Andrés Alexis67,Oudaha Khulood H.8,Obaid Rasha Fadhel9,Almulla Abbas F.10,Bazmandegan Gholamreza1112,Kamiab Zahra1314

Affiliation:

1. School of Medicine Shahid Beheshti University of Medical Sciences Tehran Iran

2. Department of Physiology, School of Medicine Hamadan University of Medical Sciences Hamadan Iran

3. Department of Pharmacology and Toxicology, School of Pharmacy Hamadan University of Medical Sciences Hamadan Iran

4. Nursing, College of Applied Medical Sciences King Faisal University Al‐Ahsa Saudi Arabia

5. Department of Medical Laboratory Technology University of Tabuk Tabuk Saudi Arabia

6. Research Group in Educational Statistics National University of Education (UNAE) Azogues Ecuador

7. Epidemiology and Biostatistics Research Group CES University Medellín Colombia

8. Pharmaceutical Chemistry Department, College of Pharmacy Al‐Ayen University Thi‐Oar Iraq

9. Department of Biomedical Engineering Al‐Mustaqbal University College Babylon Iraq

10. Department of Medical Laboratory Technology, College of Medical Technology Islamic University Najaf Iraq

11. Physiology‐Pharmacology Research Center, Research Institute of Basic Medical Sciences Rafsanjan University of Medical Sciences Rafsanjan Iran

12. Department of Physiology and Pharmacology, School of Medicine Rafsanjan University of Medical Sciences Rafsanjan Iran

13. Clinical Research Development Unit, Ali‐Ibn Abi‐Talib Hospital Rafsanjan University of Medical Sciences Rafsanjan Iran

14. Department of Community Medicine, School of Medicine Rafsanjan University of Medical Sciences Rafsanjan Iran

Abstract

AbstractGlobally, breast cancer (BC) is the leading cause of cancer‐related deaths in women. Hence, developing a therapeutic plan to overcome the disease is crucial. Numerous factors such as endogenous hormones and environmental factors may play a role in the pathophysiology of BC. Regarding the multi‐modality treatment of BC, natural compounds like ellagic acid (EA) received has received increased interest in antitumor efficacy with lower adverse effects. Based on the results of this comprehensive review, EA has multiple effects on BC cells including (1) suppresses the growth of BC cells by arresting the cell cycle in the G0/G1 phase, (2) suppresses migration, invasion, and metastatic, (3) stimulates apoptosis in MCF‐7 cells via TGF‐β/Smad3 signaling axis, (4) inhibits CDK6 that is important in cell cycle regulation, (5) binds to ACTN4 and induces its degradation via the ubiquitin‐proteasome pathway, inducing decreased cell motility and invasion in BC cells, (6) inhibits the PI3K/AKT pathway, and (7) inhibits angiogenesis‐associated activities including proliferation (reduces VEGFR‐2 tyrosine kinase activity). In conclusion, EA exhibits anticancer activity through various molecular mechanisms that influence key cellular processes like apoptosis, cell cycle, angiogenesis, and metastasis in BC. However, further researches are essential to fully elucidate its molecular targets and implications for clinical applications.

Publisher

Wiley

Subject

Food Science

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