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卵丘细胞间隙连接通讯在体外培养猪卵母细胞细胞质成熟中的作用。

Roles of gap junctional communication of cumulus cells in cytoplasmic maturation of porcine oocytes cultured in vitro.

作者信息

Mori T, Amano T, Shimizu H

机构信息

Animal Breeding and Reproduction, Division of Bioresources and Product Science, Graduate School of Agriculture, Hokkaido University, Sapporo 060-8589, Japan.

出版信息

Biol Reprod. 2000 Apr;62(4):913-9. doi: 10.1095/biolreprod62.4.913.

Abstract

Cumulus cells of the oocyte play important roles in in vitro maturation and subsequent development. One of the routes by which the factors are transmitted from cumulus cells to the oocyte is gap junctional communication (GJC). The function of cumulus cells in in vitro maturation of porcine oocytes was investigated by using a gap junction inhibitor, heptanol. Cumulus-oocyte complexes (COCs) were collected from the ovaries of slaughtered gilts by aspiration. After selection of COCs with intact cumulus cell layers and uniform cytoplasm, they were cultured in a medium with 0, 1, 5, or 10 mM of heptanol for 48 h. After culture in vitro, one group of oocytes was assessed for nuclear maturation and glutathione (GSH) content, and another group was assigned to in vitro fertilization and assessed for the penetrability of oocytes and the degree of progression to male pronuclei (MPN) of penetrated spermatozoa. At the end of in vitro maturation, the oocytes reached metaphase II at a high rate (about 80%) regardless of the presence of heptanol at various concentrations. Cumulus cell expansion and the morphology of oocytes cultured in the medium with heptanol were similar to those of control COCs matured without heptanol. The amount of GSH in cultured oocytes tended to decrease as the concentration of heptanol in the medium was increased. Although there was no difference in the rates of penetrated oocytes cultured in media with different concentrations of heptanol, the proportion of oocytes forming MPN after insemination decreased significantly (P < 0.01) at all concentrations tested. A higher rate of sperm (P < 0.01) failed to degrade their nuclear envelopes after penetration into the oocytes that were treated with heptanol. GJC between the oocyte and cumulus cells might play an important role in regulating the cytoplasmic factor(s) responsible for the removal of sperm nuclear envelopes as well as GSH inflow from cumulus cells.

摘要

卵母细胞的卵丘细胞在体外成熟及后续发育过程中发挥着重要作用。因子从卵丘细胞传递至卵母细胞的途径之一是缝隙连接通讯(GJC)。本研究使用缝隙连接抑制剂庚醇,对猪卵母细胞体外成熟过程中卵丘细胞的功能进行了探究。通过抽吸法从屠宰的后备母猪卵巢中采集卵丘 - 卵母细胞复合体(COCs)。挑选出卵丘细胞层完整且细胞质均匀的COCs后,将它们置于含有0、1、5或10 mM庚醇的培养基中培养48小时。体外培养后,一组卵母细胞用于评估核成熟度和谷胱甘肽(GSH)含量,另一组则进行体外受精,并评估卵母细胞的受精能力以及穿透的精子形成雄原核(MPN)的进展程度。在体外成熟结束时,无论培养基中庚醇浓度如何,卵母细胞都以较高比例(约80%)达到减数第二次分裂中期。在含有庚醇的培养基中培养的卵丘细胞扩展情况及卵母细胞形态与未添加庚醇培养的对照COCs相似。随着培养基中庚醇浓度的增加,培养的卵母细胞中GSH含量呈下降趋势。尽管在不同浓度庚醇培养基中培养的卵母细胞受精率没有差异,但在所有测试浓度下,授精后形成MPN的卵母细胞比例均显著降低(P < 0.01)。在穿透用庚醇处理过的卵母细胞后,更高比例的精子(P < 0.01)未能降解其核膜。卵母细胞与卵丘细胞之间的缝隙连接通讯可能在调节负责去除精子核膜的细胞质因子以及卵丘细胞中GSH流入方面发挥重要作用。

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