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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Time-lapse cinematography-compatible polystyrene-based microwell culture system: a novel tool for tracking the development of individual bovine embryos.
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Time-lapse cinematography-compatible polystyrene-based microwell culture system: a novel tool for tracking the development of individual bovine embryos.

机译:延时摄影兼容的基于聚苯乙烯的微孔培养系统:一种用于追踪单个牛胚胎发育的新颖工具。

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摘要

We have developed a polystyrene-based well-of-the-well (WOW) system using injection molding to track individual embryos throughout culture using time-lapse cinematography (TLC). WOW culture of bovine embryos following in vitro fertilization was compared with conventional droplet culture (control). No differences between control- and WOW-cultured embryos were observed during development to the blastocyst stage. Morphological quality and inner cell mass (ICM) and trophectoderm (TE) cell numbers were not different between control- and WOW-derived blastocysts; however, apoptosis in both the ICM and TE cells was reduced in WOW culture (P < 0.01). Oxygen consumption in WOW-derived blastocysts was closer to physiological level than that of control-derived blastocysts. Moreover, WOW culture improved embryo viability, as indicated by increased pregnancy rates at Days 30 and 60 after embryo transfer (P < 0.05). TLC monitoring was performed to evaluate the cleavage pattern and the duration of the first cell cycle of embryos from oocytes collected by ovum pickup; correlations with success of pregnancy were determined. Logistic regression analysis indicated that the cleavage pattern correlated with success of pregnancy (P < 0.05), but cell cycle length did not. Higher pregnancy rates (66.7%) were observed for animals in which transferred blastocysts had undergone normal cleavage, identified by the presence of two blastomeres of the same size without fragmentation, than among those with abnormal cleavage (33.3%). These results suggest that our microwell culture system is a powerful tool for producing and selecting healthy embryos and for identifying viability biomarkers.
机译:我们已经开发了一种基于聚苯乙烯的水井(WOW)系统,该系统使用注模技术通过延时摄影(TLC)跟踪整个培养过程中的单个胚胎。将体外受精后牛胚胎的WOW培养与常规液滴培养(对照)进行了比较。在发育到胚泡阶段期间,未观察到对照培养和WOW培养的胚胎之间的差异。对照和WOW来源的胚泡之间的形态学质量,内细胞质量(ICM)和滋养外胚层(TE)细胞数量没有差异。然而,在WOW培养中,ICM和TE细胞的凋亡均减少了(P <0.01)。 WOW衍生的胚泡中的耗氧量比对照衍生的胚泡中的耗氧量更接近生理水平。此外,WOW培养提高了胚胎的活力,如胚胎移植后第30天和60天的妊娠率增加所表明的(P <0.05)。进行TLC监测以评价卵子拾取收集的卵母细胞的胚胎的裂解模式和第一个细胞周期的持续时间;确定与怀孕成功的相关性。 Logistic回归分析表明,卵裂的方式与妊娠成功相关(P <0.05),但细胞周期长度却不相关。观察到移植的胚泡已正常分裂的动物的妊娠率(66.7%)高于正常分裂的动物(33.3%),该分裂卵由两个大小相同的无分裂的卵裂球的存在所鉴定。这些结果表明,我们的微孔培养系统是生产和选择健康胚胎以及鉴定生存力生物标志物的有力工具。

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