牛体外胚胎多次传代后的胚胎互补和多能性维持效率。

IF 2.1
Maura S McGraw, Jordan A Bishman, Bradford W Daigneault
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引用次数: 0

摘要

背景 目前获得高遗传性牛胚胎的方法包括需要熟练技术的低效克隆策略。目的 本文的总体目标是确定通过胚泡互补生产多胚胎的替代方法的有效性,同时确定细胞多能性的维持情况。方法 牛卵母细胞体外受精产生 4 细胞胚胎,从中分离出胚泡体,并使用孔井系统培养成 2 细胞聚集体。聚合体再培养 7 天(第一阶段)。通过分割 4 细胞的 Passage 1 胚胎,实现补体胚胎的第二次通过。对达到囊胚期的通过胚胎进行细胞数量和细胞系规格鉴定,并与未重建的带状胚胎进行复制。主要结果 第 1 和第 2 代胚胎的囊胚发育率分别为 29% 和 25%。第 1 期胚胎形成了囊胚,但与未重建的带状无接触胚胎相比,SOX2 的表达减少,胚胎大小减小。第 2 期胚胎完全没有 SOX2 表达,SOX2 和 SOX17 的转录本丰度降低,这表明多能性标记的丧失主要影响了内细胞团 (ICM) 和低分化母细胞的形成。结论 牛体外受精胚胎可通过多次传代重建,生成基因相同的胚胎。增加传代可促进滋养层细胞系的分化,同时影响 ICM 的形成。意义 这些结果为通过胚泡互补产生基因相同的牛胚胎提供了另一种策略,可应用于滋养层细胞和胎盘早期发育模型的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency of embryo complementation and pluripotency maintenance following multiple passaging of in vitro-derived bovine embryos.

Context Current methods to obtain bovine embryos of high genetic merit include approaches that require skilled techniques for low-efficiency cloning strategies. Aims The overall goal herein was to identify the efficacy of alternative methods for producing multiple embryos through blastomere complementation while determining maintenance of cell pluripotency. Methods Bovine oocytes were fertilised in vitro to produce 4-cell embryos from which blastomeres were isolated and cultured as 2-cell aggregates using a well-of-the-well system. Aggregates were returned to incubation up to 7days (Passage 1). A second passage of complement embryos was achieved by splitting 4-cell Passage 1 embryos. Passaged embryos reaching the blastocyst stage were characterised for cell number and cell lineage specification in replicate with non-reconstructed zona-intact embryos. Key results Passage 1 and 2 embryo complements yielded 29% and 25% blastocyst development, respectively. Passage 1 embryos formed blastocysts, but with a reduction in expression of SOX2 and decreased size compared to non-reconstructed zona-intact embryos. Passage 2 embryos had a complete lack of SOX2 expression and a reduction in transcript abundance of SOX2 and SOX17, suggesting loss of pluripotency markers that primarily affected inner cell mass (ICM) and hypoblast formation. Conclusions In vitro fertilised bovine embryos can be reconstructed with multiple passaging to generate genetically identical embryos. Increased passaging drives trophectoderm cell lineage specification while compromising ICM formation. Implications These results may provide an alternative strategy for producing genetically identical bovine embryos through blastomere complementation with applications towards the development of trophoblast and placental models of early development.

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