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Embryonic stem cell-derived oocyte development in follicles by transplantation into an endogenous ovarian niche.

机译:通过移植到内源性卵巢生态位中,卵泡中的胚胎干细胞衍生的卵母细胞发育。

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摘要

The oocyte (egg) is the mother of all cells, propagating genetic and epigenetic information, integrating paternal components, and reprogramming the fertilized embryo to generate offspring. However, the oocyte is mysteriously short-lived. Female reproductive potential is limited in mammalian species including humans where cessation of fertility is reached by mid-age, and 10-15% of couples are infertile due to female factors in half of these instances. Because they are restricted in number, differentiation of oocytes from embryonic stem cells (ESCs) will facilitate analyses of the genetic, epigenetic, and environmental factors affecting oocyte development and contributing to infertility and/or birth defects. The differentiation of functional oocytes from autologous embryonic stem cells will ultimately enable the understanding, potential treatment, and/or prevention of infertility in women. Additionally, ESC-derived oocytes may be used as nuclear transfer recipients to study cellular reprogramming and early embryo development.;ESCs can differentiate into cell types of three somatic germ layers and the germline. Although putative germ cells with oocyte-like characteristics were previously reported to spontaneously differentiate from mouse ESCs in vitro, functional analyses and correlation to endogenous oocyte development in vivo have been limited. In this study, I developed germ cell-specific reporter and surface marker strategies to isolate and characterize mouse ESC-derived germ cells. Using these strategies, I established a developmental timeline and genetic program of female germ cell differentiation from ESCs in vitro that initially paralleled endogenous oocyte development in vivo. However, ESC-derived oocyte maturation eventually failed, as complete meiotic progression and ovarian follicle formation were not detected.;To overcome this in vitro maturation bottleneck, I examined endogenous mouse fetal oocyte development following transplantation to develop a synchronized ovarian niche that was competent to direct oocyte maturation. I then transplanted ESC-derived oocytes into this ovarian niche and analyzed transplants for oocyte maturation in ovarian follicles. Indeed, ESC-derived oocytes functionally integrated into the ovarian niche, recruited endogenous somatic granulosa cells, and successfully developed to the primary follicle stage. In summary, this study provides rigorous evidence of physiologically relevant ESC-derived oocyte identity and function, and presents a potential clinical strategy for treatment of infertility through ovarian niche-based transplantation.
机译:卵母细胞(卵)是所有细胞的母体,传播遗传和表观遗传信息,整合父本成分,并对受精胚胎进行重编程以生成后代。但是,卵母细胞神秘地短命。在包括人类在内的哺乳动物物种中,女性的繁殖潜力是有限的,这些物种在中年之前就已经达到了停止生育的能力,其中有一半的夫妇中有10-15%的夫妇由于女性因素而无法生育。由于卵母细胞数量有限,因此它们与胚胎干细胞(ESC)的分化将有助于分析影响卵母细胞发育并导致不育和/或先天缺陷的遗传,表观遗传和环境因素。功能性卵母细胞与自体胚胎干细胞的分化最终将使人们了解,潜在治疗和/或预防女性不育。此外,ESC来源的卵母细胞可以用作核移植受体,以研究细胞重编程和早期胚胎发育。ESC可以分化为三个体细胞胚层和种系的细胞类型。尽管先前报道了具有卵母细胞样特征的推定生殖细胞在体外自发与小鼠ESC分化,但功能分析以及与体内内源卵母细胞发育的相关性受到限制。在这项研究中,我开发了生殖细胞特异的报告基因和表面标记策略来分离和表征小鼠ESC衍生的生殖细胞。使用这些策略,我建立了从胚胎干细胞体外分化女性生殖细胞的发展时间表和遗传程序,该程序最初与体内内源卵母细胞发育平行。但是,ESC衍生的卵母细胞成熟最终失败了,因为未检测到完整的减数分裂进程和卵巢卵泡形成。为了克服体外成熟的瓶颈,我检查了移植后内源性小鼠胎儿卵母细胞的发育,以开发出能够胜任的卵巢生态位。直接卵母细胞成熟。然后,我将ESC来源的卵母细胞移植到这个卵巢生态位中,并分析了移植物中卵泡中卵母细胞的成熟情况。实际上,ESC衍生的卵母细胞在功能上整合到了卵巢生态位中,募集了内源性体细胞颗粒细胞,并成功地发展到初级卵泡阶段。总而言之,这项研究提供了生理学上与ESC相关的卵母细胞同一性和功能的严格证据,并提出了通过卵巢利基移植治疗不育症的潜在临床策略。

著录项

  • 作者

    Nicholas, Cory Robert.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Biology Cell.;Health Sciences Obstetrics and Gynecology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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