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A lifelong model for the female reproductive cycle with an antimüllerian hormone treatment to delay menopause

机译:女性生殖周期的终身模型,抗衰老激素治疗可延缓更年期

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摘要

A system of 16 non-linear, delay differential equations with 66 parameters is developed to model hormonal regulation of the menstrual cycle of a woman from age 20 to 51. This mechanistic model predicts changes in follicle numbers and reproductive hormones that naturally occur over that time span. In particular, the model illustrates the decline in the pool of primordial follicles from age 20 to menopause as reported in the biological literature. Also, model simulations exhibit a decrease in antimüllerian hormone (AMH) and inhibin B and an increase in FSH with age corresponding to the experimental data. Model simulations using the administration of exogenous AMH show that the transfer of non-growing primordial follicles to the active state can be slowed enough to provide more follicles for development later in life and to cause a delay in the onset of menopause as measured by the number of primordial follicles remaining in the ovaries. Other effects of AMH agonists and antagonists are investigated in the setting of this model. © 2013 Elsevier Ltd.
机译:开发了一个由16个非线性,具有66个参数的延迟微分方程组组成的系统,以模拟荷尔蒙对20岁至51岁女性月经周期的调节。这种机械模型可预测那段时间自然发生的卵泡数和生殖激素的变化。跨度。特别地,该模型说明了生物学文献报道的从20岁到绝经的原始卵泡池的减少。此外,模型仿真显示,随着年龄的增长,抗苗勒管激素(AMH)和抑制素B减少,而FSH则增加,这与实验数据相对应。使用外源AMH进行的模型模拟显示,非生长的原始卵泡向活动状态的转移可以足够缓慢地进行,以提供更多的卵泡供以后的发育,并导致更年期的发作(按数字衡量)保留在卵巢中的原始卵泡。在此模型的背景下,研究了AMH激动剂和拮抗剂的其他作用。 ©2013爱思唯尔有限公司。

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