Dietary phytoestrogen diosgenin interrupts metabolism, physiology, and reproduction of Swiss albino mice: Possible mode of action as an emerging environmental contaminant, endocrine disruptor and reproductive toxicant

薯蓣皂甙元 生殖毒性 内分泌系统 植物雌激素 生物 后代 毒性 生理学 激素 内分泌干扰物 雌激素 药理学 内分泌学 内科学 医学 怀孕 遗传学
作者
Maurya Khushboo,Sanasam Sanjeev,Meesala Krishna Murthy,Maibam Sunitadevi,Roy Dinata,Baishya Bhanushree,Rema Momin Bidanchi,Nisekhoto Nisa,Sailo Lalrinzuali,Bose Manikandan,Ahmed-Laskar Saeed,Giri Abinash,Buragohain Pori,Chettri Arati,Vikas Kumar Roy,Guruswami Gurusubramanian
出处
期刊:Food and Chemical Toxicology [Elsevier BV]
卷期号:176: 113798-113798 被引量:3
标识
DOI:10.1016/j.fct.2023.113798
摘要

Dietary phytoestrogens are the main source of environmental contamination due to their estrogen-mimicking and endocrine-disrupting effects, posing a threat to microbial, soil, plant, and animal health. Diosgenin, a phytosteroid saponin, is used in many traditional medicines, nutraceuticals, dietary supplements, contraceptives, and hormone replacement therapies against numerous diseases and disorders. It is important to be aware of the potential risks associated with diosgenin, as well as its potential to cause reproductive and endocrine toxicity. Due to the lack of research on the safety and probable adverse side effects of diosgenin, this work evaluated the endocrine-disrupting and reproductive toxicity of diosgenin in albino mice by following acute toxicity (OECD-423), repeated dose 90-day oral toxicity (OECD-468), and F1 extended one-generation reproductive toxicity (OECD-443) studies. Diosgenin was found to be slightly toxic, with LD50 for male and female mice being 546.26 and 538.72 mg/kg, respectively. Chronic exposure of diosgenin (10, 50, 100, and 200 mg/kg) generated oxidative stress, depleted antioxidant enzymes, disturbed homeostasis of the reproductive hormones, and interrupted steroidogenesis, germ cell apoptosis, gametogenesis, sperm quality, estrous cycle, and reproductive performance in the F0 and F1 offspring. Long-term oral exposure of diosgenin to the mice disturbed the endocrine and reproductive functions and generated transgenerational reproductive toxic effects in F0 and F1 offspring. These results suggest that diosgenin should be used carefully in food products and medical applications due to its potential endocrine-disrupting and reproductive toxic effects. The findings of this study provide a better understanding of the potential adverse effects of diosgenin and the need for appropriate risk assessment and management of its use.
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