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Effect of Different Culture Systems and 3, 5, 3'-Triiodothyronine/Follicle-Stimulating Hormone on Preantral Follicle Development in Mice
Authors:Cheng Zhang  Xiaoxia Wang  Zhengpin Wang  Wanbao Niu  Baochang Zhu  Guoliang Xia
Affiliation:1. College of Life Science, Capital Normal University, Beijing, Peoples’ Republic of China.; 2. State Key Laboratory for Agro-Biotechnology, College of Biological Science, China Agricultural University, Beijing, Peoples’ Republic of China.; 3. Animal Science and Technology College, Beijing University of Agriculture, Beijing, Peoples’ Republic of China.; Institute of Zoology, Chinese Academy of Sciences, China,
Abstract:The mechanical method to isolate preantral follicle has been reported for many years. However, the culture systems in vitro are still unstable. The aim of this study was to analyze the effect of the culture system of mice preantral follicles on the follicular development in vitro. The results showed that the 96-well plate system was the most effective method for mice follicle development in vitro (volume change: 51.71%; survival rate: 89%, at day 4). Follicle-stimulating hormone (FSH) and Thyroid hormone (TH) are important for normal follicular development and dysregulation of hormones are related with impaired follicular development. To determine the effect of hormone on preantral follicular development, we cultured follicle with hormones in the 96-well plate culture system and found that FSH significantly increased preantral follicular growth on day 4. The FSH-induced growth action was markedly enhanced by T3 although T3 was ineffective alone. We also demonstrated by QRT-PCR that T3 significantly enhanced FSH-induced up-regulation of Xiap mRNA level. Meanwhile, Bad, cell death inducer, was markedly down-regulated by the combination of hormones. Moreover, QRT-PCR results were also consistent with protein regulation which detected by Western Blotting analysis. Taken together, the findings of the present study demonstrate that 96-well plate system is an effective method for preantral follicle development in vitro. Moreover, these results provide insights on the role of thyroid hormone in increasing FSH-induced preantral follicular development, which mediated by up-regulating Xiap and down-regulating Bad.
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