首页> 外文期刊>Fertility and Sterility: Official Journal of the American Fertility Society, Pacific Coast Fertility Society, and the Canadian Fertility and Andrology Society >Nuclear maturation and structural components of nonhuman primate cumulus-oocyte complexes during in vivo and in vitro maturation.
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Nuclear maturation and structural components of nonhuman primate cumulus-oocyte complexes during in vivo and in vitro maturation.

机译:体内和体外成熟过程中非人类灵长类动物卵丘-卵母细胞复合物的核成熟和结构成分。

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OBJECTIVE: To compare cumulus cell structure and timing of oocyte maturation of in vitro-matured (IVM) and in vivo-matured (VVM) nonhuman primate oocytes. DESIGN: In vivo maturation and in vitro maturation of oocytes. SETTING: Animal cell culture laboratory. ANIMAL(S): Forty-eight female rhesus macaques. INTERVENTION(S): Fifteen animals were administered FSH, and aspirated oocytes were cultured in vitro for 0, 3, 6, 12, or 24 hours (IVM). Thirty-three animals were administered FSH and hCG, and oocytes were collected 3, 6, 12, or 28-30 hours after hCG (VVM). MAIN OUTCOME MEASURE(S): Nuclear maturation and microtubule scores of oocytes and actin and tubulin transzonal processes of cumulus cells. Embryo development was observed for VVM oocytes. RESULT(S): The rate of nuclear maturation was faster for IVM oocytes compared with VVM oocytes. Actin transzonal processes decreased 0-12 hours after hCG administration for VVM oocytes. Tubulin transzonal processes of IVM and VVM oocytes decreased from 0 to 24 hours and from 0 to 3 hours, respectively. Embryo development improved as VVM time increased. CONCLUSION(S): Nuclear maturation and remodeling of cumulus-oocyte complex structural components associated with in vitro maturation do not parallel those of oocyte maturation in vivo, indicating that in vitro culture conditions continue to be suboptimal.
机译:目的:比较体外成熟(IVM)和体内成熟(VVM)非人类灵长类卵母细胞的卵丘细胞结构和卵母细胞成熟的时间。设计:卵母细胞的体内成熟和体外成熟。地点:动物细胞培养实验室。动物:48只雌性猕猴。干预:对15只动物进行FSH给药,将吸出的卵母细胞体外培养0、3、6、12或24小时(IVM)。 33只动物接受了FSH和hCG的治疗,hCG(VVM)后3、6、12或28-30小时收集了卵母细胞。主要观察指标:卵母细胞的核成熟和微管分数以及卵丘细胞的肌动蛋白和微管蛋白跨区突变。观察到VVM卵母细胞的胚胎发育。结果:与VVM卵母细胞相比,IVM卵母细胞的核成熟速率更快。 hVM给予VVM卵母细胞后,肌动蛋白的跨区过程减少了0-12小时。 IVM和VVM卵母细胞的微管蛋白跨区域过程分别从0减少到24小时和从0减少到3小时。随着VVM时间增加,胚胎发育得到改善。结论:与体外成熟相关的卵-卵母细胞复合物结构成分的核成熟和重塑与体内卵母细胞成熟的过程不平行,这表明体外培养条件仍然是次优的。

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