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利用机械振动系统观察小鼠胚胎从2细胞期到囊胚期的运动及胚胎发育。

Mouse embryo motion and embryonic development from the 2-cell to blastocyst stage using mechanical vibration systems.

作者信息

Asano Yuka, Matsuura Koji

机构信息

Research Core for Interdisciplinary Sciences, Okayama University, 3-1-1 Tsushima-naka, Okayama 700-8530, Japan.

出版信息

Reprod Fertil Dev. 2014 Jun;26(5):733-41. doi: 10.1071/RD13039.

Abstract

We investigated the effect of mechanical stimuli on mouse embryonic development from the 2-cell to blastocyst stage to evaluate physical factors affecting embryonic development. Shear stress (SS) applied to embryos using two mechanical vibration systems (MVSs) was calculated by observing microscopic images of moving embryos during mechanical vibration (MV). The MVSs did not induce any motion of the medium and the diffusion rate using MVSs was the same as that under static conditions. Three days of culture using MVS did not improve embryonic development. MVS transmitted MV power more efficiently to embryos than other systems and resulted in a significant decrease in development to the morula or blastocyst stage after 2 days. Comparison of the results of embryo culture using dynamic culture systems demonstrated that macroscopic diffusion of secreted materials contributes to improved development of mouse embryos to the blastocyst stage. These results also suggest that the threshold of SS and MV to induce negative effects for mouse embryos at stages earlier than the blastocyst may be lower than that for the blastocyst, and that mouse embryos are more sensitive to physical and chemical stimuli than human or pig embryos because of their thinner zona pellucida.

摘要

我们研究了机械刺激对小鼠从2细胞期到囊胚期胚胎发育的影响,以评估影响胚胎发育的物理因素。通过观察机械振动(MV)过程中移动胚胎的显微图像,计算使用两种机械振动系统(MVS)施加于胚胎的剪切应力(SS)。MVS不会引起培养基的任何移动,且使用MVS时的扩散速率与静态条件下相同。使用MVS培养三天并未改善胚胎发育。与其他系统相比,MVS能更有效地将MV能量传递给胚胎,并导致2天后发育至桑葚胚或囊胚期的胚胎数量显著减少。使用动态培养系统进行胚胎培养的结果比较表明,分泌物质的宏观扩散有助于小鼠胚胎发育至囊胚期。这些结果还表明,对于早于囊胚期的小鼠胚胎,诱导负面影响的SS和MV阈值可能低于囊胚期,并且由于小鼠胚胎的透明带较薄,它们对物理和化学刺激比人类或猪胚胎更敏感。

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