Nation A, Selwood L
Department of Zoology, The University of Melbourne, Parkville, Victoria, Australia.
Reproduction. 2009 Aug;138(2):247-55. doi: 10.1530/REP-09-0028. Epub 2009 Jun 3.
A model marsupial culture system has been developed whereby individual primary follicles, obtained from adult ovaries, can be grown in vitro to the antral stage and oocytes retrieved from these follicles can achieve nuclear maturation (metaphase II) in the presence of LH. Primary follicles isolated from adult Sminthopsis macroura ovaries were cultured individually in one of four systems: microdrops under oil, upright, inverted, or roller culture. After 6 days of culture, cumulus-oocyte complexes (COCs) were excised from early antral follicles and incubated for an additional 24 h to assess meiotic competence and the effects of LH and lithium on oocyte maturation. Histology and transmission electron microscopy established normal in vivo standards and verified oocyte and follicular integrity following culture. On day 6 of culture, follicle viability was significantly greater in the inverted system (73%) than in the other three systems (10-46%). The inverted system was the most effective in supporting development with follicles demonstrating progressive growth during culture and showing antral signs by day 4. Meiotic resumption during COC culture was facilitated by LH, but hindered by lithium. The ability to resume meiosis and progress to metaphase II was equivalent in oocytes retrieved following follicle culture and those matured in vivo. This study highlights the importance of oxygen and nutrient availability during marsupial follicle culture, and demonstrates for the first time that primary follicles isolated from adult mammalian ovaries can undergo normal growth and development in vitro, to produce mature, meiotically competent oocytes.
已开发出一种有袋动物培养系统模型,通过该系统,从成年卵巢获取的单个初级卵泡能够在体外生长至窦状卵泡阶段,并且从这些卵泡中获取的卵母细胞在促黄体生成素(LH)存在的情况下能够实现核成熟(减数分裂中期II)。从成年长吻袋貂卵巢分离的初级卵泡在以下四种系统之一中单独培养:油下微滴培养、直立培养、倒置培养或旋转培养。培养6天后,从早期窦状卵泡中切除卵丘-卵母细胞复合体(COC),并再孵育24小时,以评估减数分裂能力以及LH和锂对卵母细胞成熟的影响。组织学和透射电子显微镜确定了体内正常标准,并在培养后验证了卵母细胞和卵泡的完整性。在培养的第6天,倒置系统中的卵泡活力(73%)显著高于其他三种系统(10%-46%)。倒置系统在支持卵泡发育方面最有效,卵泡在培养期间显示出逐渐生长,并在第4天出现窦状卵泡迹象。LH促进了COC培养期间的减数分裂恢复,但锂对其有阻碍作用。卵泡培养后获取的卵母细胞与体内成熟的卵母细胞在恢复减数分裂并进展至减数分裂中期II的能力方面相当。这项研究突出了有袋动物卵泡培养过程中氧气和营养物质供应的重要性,并首次证明从成年哺乳动物卵巢分离的初级卵泡能够在体外正常生长和发育,以产生成熟的、具有减数分裂能力的卵母细胞。