粒细胞-巨噬细胞集落刺激因子缺乏对卵巢滤泡细胞功能的影响。

R B Gilchrist, D B Rowe, L J Ritter, S A Robertson, R J Norman, D T Armstrong
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引用次数: 21

摘要

粒细胞-巨噬细胞集落刺激因子(GM-CSF)是一种由淋巴造血和其他细胞系分泌的细胞因子,已知可影响卵巢周期和胚胎发育。本研究的目的是用GM- csf缺陷(GM -/-)小鼠研究GM- csf对卵巢滤泡细胞功能的影响。采用eCG刺激未成熟的GM -/-和GM +/+小鼠,48 h后收集卵丘-卵母细胞复合物和壁粒细胞。采用RT-PCR检测卵丘-卵母细胞复合物和壁粒细胞中GM-CSF受体α和β mRNA亚基的表达。两种基因型的卵母细胞复合物仅表达gm - csfrα亚基的mRNA,而壁粒细胞同时表达α和β受体亚基。从转基因-/-小鼠中恢复的卵丘-卵母细胞复合体的每个卵丘细胞的数量大约是转基因+/+小鼠的两倍(P < 0.05),尽管发现剥除的转基因-/-卵母细胞的促生长活性与野生型卵母细胞相当。与转基因+/+小鼠相比,转基因-/-小鼠外周血壁颗粒细胞的孕酮产量显著降低(P < 0.05),而转基因-/-小鼠外周血壁颗粒细胞的DNA合成略有增加。无论GM-CSF的状态如何,体外添加rec-mGM-CSF均不影响细胞类型的DNA合成或壁粒细胞的孕酮生成。GM-CSF缺乏对卵泡刺激素和胰岛素样生长因子I刺激卵母细胞复合物(分别约为15倍和3倍)和壁粒细胞(分别约为2倍和3倍)DNA合成的能力没有影响。综上所述,这些数据表明GM-CSF影响与小鼠卵泡成熟相关的事件。GM-CSF的作用并不直接作用于颗粒细胞或积云细胞,而似乎是间接介导的,可能是通过居住在膜内的局部巨噬细胞群的类固醇生成调节分泌物的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of granulocyte-macrophage colony-stimulating factor deficiency on ovarian follicular cell function.

Granulocyte-macrophage colony-stimulating factor (GM-CSF), a cytokine secreted by lymphohaemopoietic and other cell lineages, is known to influence ovarian cyclicity and embryo development. The aim of this study was to examine the effect of GM-CSF on ovarian follicular cell function using GM-CSF-deficient (GM -/-) mice. Immature GM -/- and GM +/+ mice were stimulated with eCG, and cumulus-oocyte complexes and mural granulosa cells were collected 48 h later. Expression of GM-CSF receptor (GM-CSFR) alpha and beta mRNA subunits by cumulus-oocyte complexes and mural granulosa cells was examined using RT-PCR. Cumulus-oocyte complexes from both genotypes were found to express mRNA for the GM-CSFRalpha-subunit only, while the mural granulosa cells expressed both the alpha and beta receptor subunits. Cumulus-oocyte complexes recovered from GM -/- mice had approximately twice the number of cumulus cells per cumulus-oocyte complex than did those of GM +/+ mice (P < 0.05), even though the growth-promoting activity of denuded GM -/- oocytes was found to be equivalent to that of wild-type oocytes. GM-CSF deficiency was associated with marginally increased DNA synthesis in cumulus cells and significantly (P < 0.05) lower progesterone production by mural granulosa cells recovered from GM -/- compared with those recovered from GM +/+ mice. The addition of rec-mGM-CSF in vitro did not affect DNA synthesis in either cell type or progesterone production by mural granulosa cells, irrespective of GM-CSF status. There was no effect of GM-CSF deficiency on the capacity of FSH and insulin-like growth factor I to stimulate DNA synthesis in cumulus-oocyte complexes (approximately 15- and threefold, respectively) and in mural granulosa cells (approximately two- and threefold, respectively). Taken together, these data show that GM-CSF influences events associated with follicular maturation in mice. The effects of GM-CSF are not exerted directly in granulosa or cumulus cells, but appear to be mediated indirectly, perhaps through the agency of steroidogenesis-regulating secretions of local macrophage populations residing in the theca.

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