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Isoflavones derived from plant raw materials: bioavailability, anti-cancer, anti-aging potentials, and microbiome modulation

Saied A. Aboushanab, Shaimaa M. Khedr, И. Ф. Гетте, И. Г. Данилова, Наталья Александровна Кольберг, G. A. Ravishankar, Ambati Ranga Rao, Elena G. Kovaleva

2021Critical Reviews in Food Science and Nutrition75 citationsDOI

Abstract

Isoflavones are secondary metabolites that represent the most abundant category of plant polyphenols. Dietary soy, kudzu, and red clover contain primarily genistein, daidzein, glycitein, puerarin, formononetin, and biochanin A. The structural similarity of these compounds to β-estradiol has demonstrated protection against age-related and hormone-dependent diseases in both genders. Demonstrative shreds of evidence confirmed the fundamental health benefits of the consumption of these isoflavones. These relevant activities are complex and largely driven by the source, active ingredients, dose, and administration period of the bioactive compounds. However, the preclinical and clinical studies of these compounds are greatly variable, controversial, and still with no consensus due to the non-standardized research protocols. In addition, absorption, distribution, metabolism, and excretion studies, and the safety profile of isoflavones have been far limited. This highlights a major gap in understanding the potentially critical role of these isoflavones as prospective replacement therapy. Our general review exclusively focuses attention on the crucial role of isoflavones derived from these plant materials and critically highlights their bioavailability, possible anticancer, antiaging potentials, and microbiome modulation. Despite their fundamental health benefits, plant isoflavones reveal prospective therapeutic effects that worth further standardized analysis.

Topics & Concepts

IsoflavonesGlyciteinGenisteinDaidzeinPhytoestrogensBiochanin ADaidzinBioavailabilityPuerarinMedicinePharmacologyFormononetinEstrogenInternal medicineAlternative medicinePathologyPhytoestrogen effects and researchPhytochemicals and Antioxidant ActivitiesTea Polyphenols and Effects
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