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体外成熟前后牛卵母细胞的线粒体分布及三磷酸腺苷含量:与体外受精和培养后的形态学标准及发育能力的相关性

Mitochondrial distribution and adenosine triphosphate content of bovine oocytes before and after in vitro maturation: correlation with morphological criteria and developmental capacity after in vitro fertilization and culture.

作者信息

Stojkovic M, Machado S A, Stojkovic P, Zakhartchenko V, Hutzler P, Gonçalves P B, Wolf E

机构信息

Department of Molecular Animal Breeding and Genetics, University of Munich, D-85764 Oberschleissheim, Germany.

出版信息

Biol Reprod. 2001 Mar;64(3):904-9. doi: 10.1095/biolreprod64.3.904.

Abstract

In this study, we evaluated mitochondrial distribution and ATP content of individual bovine oocytes before and after in vitro maturation (IVM). Cumulus-oocyte complexes were classified according to morphological criteria: category 1, homogeneous oocyte cytoplasm, compact multilayered cumulus oophorus; category 2, cytoplasm with small inhomogeneous areas, more than five layers of compact cumulus; category 3, heterogeneous/vacuolated cytoplasm, three to five layers of cumulus including small areas of denuded zona pellucida; category 4, heterogeneous cytoplasm, completely or in great part denuded. In immature oocytes, staining with MitoTracker green revealed mitochondrial clumps in the periphery of the cytoplasm, with a strong homogenous signal in category 1 oocytes, a weaker staining in category 2 oocytes, allocation of mitochondria around vacuoles in category 3 oocytes, and poor staining of mitochondria in category 4 oocytes. After IVM, mitochondrial clumps were allocated more toward the center, became larger, and stained more intensive in category 1 and 2 oocytes. This was also true for category 3 oocytes; however, mitochondria maintained their perivacuolar distribution. No mitochondrial reorganization was seen for category 4 oocytes. Before IVM, the average ATP content of category 1 oocytes (1.8 pmol) tended to be higher than that of category 2 oocytes (1.6 pmol) and was significantly (P < 0.01) higher than in category 3 (1.4 pmol) and 4 oocytes (0.9 pmol). The IVM resulted in a significant (P < 0.01) increase in the average ATP content of all oocyte categories, with no difference between oocytes extruding versus nonextruding a polar body. After in vitro fertilization (IVF) and culture, significantly (P < 0.05) more category 1 and 2 than category 3 and 4 oocytes developed to the morula or blastocyst stage (determined 168 h after IVF). Total cell numbers of expanded blastocysts derived from category 1 and 2 oocytes were significantly (P < 0.05) higher than of those originating from category 3 and 4 oocytes. These data indicate that mitochondrial reorganization and ATP levels are different between morphologically good and poor oocytes and may be responsible for their different developmental capacity after IVF.

摘要

在本研究中,我们评估了体外成熟(IVM)前后单个牛卵母细胞的线粒体分布和ATP含量。卵丘-卵母细胞复合体根据形态学标准分类:1类,卵母细胞胞质均匀,卵丘致密多层;2类,胞质有小的不均匀区域,致密卵丘超过五层;3类,胞质异质/有空泡,卵丘三至五层,包括小面积透明带裸露区;4类,胞质异质,完全或大部分裸露。在未成熟卵母细胞中,用MitoTracker green染色显示线粒体在胞质周边聚集,1类卵母细胞有强烈的均匀信号,2类卵母细胞染色较弱,3类卵母细胞中线粒体围绕空泡分布,4类卵母细胞中线粒体染色较差。IVM后,1类和2类卵母细胞中的线粒体聚集更多地向中心分布,变得更大,且染色更强烈。3类卵母细胞也是如此;然而,线粒体保持其围绕空泡的分布。4类卵母细胞未见线粒体重新组织。IVM前,1类卵母细胞的平均ATP含量(1.8皮摩尔)倾向于高于2类卵母细胞(1.6皮摩尔),且显著高于3类(1.4皮摩尔)和4类卵母细胞(0.9皮摩尔)(P<0.01)。IVM导致所有卵母细胞类别的平均ATP含量显著增加(P<0.01),排出极体的卵母细胞与未排出极体的卵母细胞之间无差异。体外受精(IVF)和培养后,发育至桑椹胚或囊胚阶段(IVF后168小时确定)的1类和2类卵母细胞显著多于3类和4类卵母细胞(P<0.05)。源自1类和2类卵母细胞的扩张囊胚的总细胞数显著高于源自3类和4类卵母细胞的囊胚(P<0.05)。这些数据表明,形态学上良好和不良的卵母细胞之间线粒体重新组织和ATP水平不同,这可能是它们IVF后发育能力不同的原因。

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