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Apigenin in cancer therapy: Prevention of genomic instability and anticancer mechanisms

Masoud MoslehiDepartment of Medical Physics, School of Medicine Isfahan University of Medical Sciences Isfahan IranSepideh RezaeiDepartment of Chemistry University of Houston Houston Texas USAPourya TalebzadehStudent Research Committee, Tehran Medical Faculty Islamic Azad University Tehran IranMohammad Javed AnsariDepartment of Pharmaceutics, College of Pharmacy Prince Sattam Bin Abdulaziz University Al‐kharj Saudi ArabiaMohammed Abed JawadDepartment of Pharmacy Al‐Nisour University College Baghdad IraqAbduladheem Turki JalilMedical Laboratories Techniques Department Al‐Mustaqbal University College Babylon, Hilla IraqNima Rastegar‐PouyaniDepartment of Pharmacology and Toxicology, Faculty of Pharmacy Tehran University of Medical Sciences Tehran IranEmad JafarzadehDepartment of Pharmacology and Toxicology, Faculty of Pharmacy Tehran University of Medical Sciences Tehran IranShahram TaebDepartment of Radiology, School of Paramedical Sciences Guilan University of Medical Sciences Rasht IranMasoud NajafiMedical Technology Research Center, Institute of Health Technology Kermanshah University of Medical Sciences Kermanshah Iran
2022en
ABI

Аннотация

The incidence of cancer has been growing worldwide. Better survival rates following the administration of novel drugs and new combination therapies may concomitantly cause concern regarding the long-term adverse effects of cancer therapy, for example, second primary malignancies. Moreover, overcoming tumour resistance to anticancer agents has been long considered as a critical challenge in cancer research. Some low toxic adjuvants such as herb-derived molecules may be of interest for chemoprevention and overcoming the resistance of malignancies to cancer therapy. Apigenin is a plant-derived molecule with attractive properties for chemoprevention, for instance, promising anti-tumour effects, which may make it a desirable adjuvant to reduce genomic instability and the risks of second malignancies among normal tissues. Moreover, it may improve the efficiency of anticancer modalities. This paper aims to review various effects of apigenin in both normal tissues and malignancies. In addition, we explain how apigenin may have the ability to protect usual cells against the genotoxic repercussions following radiotherapy and chemotherapy. Furthermore, the inhibitory effects of apigenin on tumours will be discussed.

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