Recent updates on animal models for understanding the etiopathogenesis of polycystic ovarian syndrome

高雄激素血症 多囊卵巢 戊酸雌二醇 动物模型 不育 医学 生物信息学 啮齿动物模型 生理学 激素 内分泌学 生物 怀孕 肥胖 胰岛素抵抗 遗传学
作者
Leander Corrie,Monica Gulati,Sachin Kumar Singh,Bhupinder Kapoor,Rubiya Khursheed,Ankit Awasthi,Sukriti Vishwas,Dinesh Kumar Chellappan,Gaurav Gupta,Niraj Kumar Jha,Krishnan Anand,Kamal Dua
出处
期刊:Life Sciences [Elsevier]
卷期号:280: 119753-119753 被引量:44
标识
DOI:10.1016/j.lfs.2021.119753
摘要

Polycystic ovarian syndrome (PCOS) is the primary cause of female infertility affecting several women worldwide. Changes in hormonal functions such as hyperandrogenism are considered a significant factor in developing PCOS in women. In addition, many molecular pathways are involved in the pathogenesis of PCOS in women. To have better insights about PCOS, it is data from clinical studies carried on women suffering from PCOS should be collected. However, this approach has several implications, including ethical considerations, cost involved and availability of subject. Moreover, during the early drug development process, it is always advisable to use non-human models mimicking human physiology as they are less expensive, readily available, have a shorter gestation period and less risk involved. Many animal models have been reported that resemble the PCOS pathways in human subjects. However, the models developed on rats and mice are more preferred over other rodent/non-rodent models due to their closer resemblance with human PCOS development mechanism. The most extensively reported PCOS models for rats and mice include those induced by using testosterone, letrozole and estradiol valerate. As the pathophysiology of PCOS is complex, none of the explored models completely surrogates the PCOS related conditions occurring in women. Hence, there is a need to develop an animal model that can resemble the pathophysiology of PCOS in women. The review focuses on various animal models explored to understand the pathophysiology of PCOS. The article also highlights some environmental and food-related models that have been used to induce PCOS.
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