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体内和体外培养的牛桑葚胚和囊胚的精细结构

Fine structure of bovine morulae and blastocysts in vivo and in vitro.

作者信息

Abe H, Otoi T, Tachikawa S, Yamashita S, Satoh T, Hoshi H

机构信息

Research Institute for the Functional Peptides, Yamagata, Japan.

出版信息

Anat Embryol (Berl). 1999 Jun;199(6):519-27. doi: 10.1007/s004290050249.

Abstract

The ultrastructure of bovine morulae and blastocysts developed from in vitro-matured and -fertilized oocytes in a serum-supplemented medium was compared with that of morulae and blastocysts collected non-surgically from superovulated cows. In the in vivo-derived morulae, two characteristic cells types could be identified by the electron-density of their cytoplasm and by their ultrastructural features. One type appeared light in color with low electron-dense cytoplasm. These cells were located in the peripheral layer of the cluster of blastomeres, possessed numerous cellular organelles such as mitochondria and Golgi apparatus and had microvilli projecting into the perivitelline space. The other cell type was distinguished by cytoplasm that stained more densely than that of the lighter-appearing cells. The darker-appearing cells generally possessed fewer organelles than the lighter cells, but many lysosome-like structures were present in the cytoplasm. The in vitro-developed morulae also contained two types of cells similar to those observed in the in vivo morulae. However, most of the in vitro-developed cells possessed numerous lipid droplets and contained fewer lysosome-like structures than the cells of the in vivo-derived morulae. The blastocysts, both in vivo and in vitro, showed a clear differentiation of trophoblast cells and inner cell mass (ICM)-cells. In the in vivo-derived blastocyst, the apical membrane of trophoblast cells was covered with large, numerous microvilli and well-developed junctional complexes were observed. Lipid droplets were present in the cytoplasm of trophoblast and ICM-cells but were not abundant. In vitro-developed blastocysts showed less well-developed junctional complexes between trophoblast cells, less well-developed apical microvilli on the trophoblast cells, and contained large numbers of lipid droplets. This accumulation of lipid droplets was higher in the trophoblast cells than in the ICM-cells. The zonae pellucidae of in vitro-developed embryos were thinner than that of the in vivo-derived embryos. This study demonstrates conspicuous differences in the ultrastructural features between the in vivo-derived and in vitro-developed embryos, suggesting that the ultrastructure may reflect the various physiological anomalies observed in previous studies.

摘要

将在添加血清的培养基中由体外成熟和受精的卵母细胞发育而来的牛桑葚胚和囊胚的超微结构,与从超排母牛非手术采集的桑葚胚和囊胚的超微结构进行了比较。在体内来源的桑葚胚中,根据细胞质的电子密度及其超微结构特征可识别出两种特征性细胞类型。一种类型颜色浅,细胞质电子密度低。这些细胞位于卵裂球簇的外周层,拥有许多细胞器,如线粒体和高尔基体,并有微绒毛伸入卵周间隙。另一种细胞类型的特征是细胞质染色比浅色细胞更浓密。深色细胞通常比浅色细胞拥有更少的细胞器,但细胞质中有许多溶酶体样结构。体外发育的桑葚胚也含有两种与体内桑葚胚中观察到的细胞相似的细胞类型。然而,大多数体外发育的细胞含有大量脂滴,且与体内来源的桑葚胚细胞相比,溶酶体样结构较少。体内和体外的囊胚均显示出滋养层细胞和内细胞团(ICM)细胞的明显分化。在体内来源的囊胚中,滋养层细胞的顶端膜覆盖着大量的微绒毛,并且观察到发育良好的连接复合体。滋养层和ICM细胞的细胞质中存在脂滴,但不丰富。体外发育的囊胚在滋养层细胞之间显示出发育较差的连接复合体,滋养层细胞上的顶端微绒毛发育较差,并且含有大量脂滴。滋养层细胞中脂滴的这种积累比ICM细胞中更高。体外发育胚胎的透明带比体内来源胚胎的更薄。这项研究表明体内来源和体外发育胚胎的超微结构特征存在明显差异,表明超微结构可能反映了先前研究中观察到的各种生理异常。

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