Wu Shuang, Wang Yining, Ding Haixiang, Sun Ningxia, Liu Yan, Wang Liang, Sheng Fei, Zhang Honghong, Yang Fu, Li Wen
Department of Reproductive Medicine Center, Changzheng Hospital, Second Military Medical University, Shanghai, China.
Department of Medical Genetics, Second Military Medical University, Shanghai, China.
Front Genet. 2021 Feb 4;11:603683. doi: 10.3389/fgene.2020.603683. eCollection 2020.
Premature ovarian insufficiency (POI) is characterized by abnormal ovarian function before the age of 40. POI showed that primordial follicles developed in disorder. mTOR signaling plays a vital role in the process of follicle development. It has been verified that the mTOR signaling pathway activator, MHY1485, can promote primordial follicle development in mice. We considered that MHY1485 would be a promising fertility preservation method for POI patients.
The fragmented ovarian tissues of normal woman was cultured with activator MHY1485 , and then the control and activated ovaries were transplanted into the kidney capsules of ovariectomized mice. We then used the Infinium Human Methylation EPIC BeadChip to verify the DNA methylation level of ovarian tissues, thus exploring the effectiveness of them.
MHY1485 stimulated mTOR, S6K1, and rpS6 phosphorylation. Cultured with MHY1485, ovarian weights increased and endocrine function was restored. The number of growing follicles was increased. The activation process did not induce histological changes or abnormal DNA methylation occurrence.
MHY1485 for activation (IVA) is effective for ovarian rejuvenation and is a potential therapeutic treatment for POI patients.
卵巢早衰(POI)的特征是40岁之前卵巢功能异常。POI表明原始卵泡发育紊乱。mTOR信号在卵泡发育过程中起关键作用。已证实mTOR信号通路激活剂MHY1485可促进小鼠原始卵泡发育。我们认为MHY1485对POI患者来说将是一种有前景的生育力保存方法。
将正常女性的碎片化卵巢组织用激活剂MHY1485进行培养,然后将对照卵巢和激活后的卵巢移植到去卵巢小鼠的肾包膜下。然后我们使用Infinium Human Methylation EPIC BeadChip来验证卵巢组织的DNA甲基化水平,从而探究其有效性。
MHY1485刺激了mTOR、S6K1和rpS6的磷酸化。用MHY1485培养后,卵巢重量增加且内分泌功能得以恢复。生长卵泡的数量增加。激活过程未诱导组织学变化或异常DNA甲基化的发生。
MHY1485激活法(IVA)对卵巢复壮有效,是POI患者的一种潜在治疗方法。