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牛卵母细胞体外成熟过程中的卵丘扩展:与细胞内谷胱甘肽水平的关系及其对后续胚胎发育的作用。

Cumulus expansion during in vitro maturation of bovine oocytes: relationship with intracellular glutathione level and its role on subsequent embryo development.

作者信息

Furnus C C, de Matos D G, Moses D F

机构信息

Centro de Investigaciones Reproductivas Pérez Companc, Fundación Margarita Pérez Companc, Buenos Aires, Argentina.

出版信息

Mol Reprod Dev. 1998 Sep;51(1):76-83. doi: 10.1002/(SICI)1098-2795(199809)51:1<76::AID-MRD9>3.0.CO;2-T.

Abstract

Glutamine (GLN) is a metabolic precursor for hexosamine synthesis and its inclusion in culture medium has been reported to improve cumulus expansion. Glutamine and cysteine share the same transport system. Excess external GLN may act as a competitive inhibitor for the uptake of cysteine and stimulate loss of cellular cysteine, interfering this with GSH synthesis. Experiments were designed to evaluate the effect of 1-3 mM GLN during in vitro maturation (IVM) on bovine-cumulus expansion, intracellular GSH levels in both oocytes and cumulus cells, and subsequent embryo development up to blastocyst stage. Also, GSH content was measured in 6- to 8-cell embryos and a possible relationship between cumulus expansion and GSH synthesis was studied. Intact cumulus cell-oocyte complexes were incubated for 24 hr and cumulus expansion was measured by a computerized image-digitizing system either before or after IVM. IVM/IVF bovine oocytes were cultured up to 6- to 8-cell stage embryos for assessment of GSH content or for 8 days up to blastocyst stage for embryo development. The measurement of total GSH content was performed by an enzymatic method in oocytes, cumulus cells and 6- to 8-cell embryos. The maximal expansion was achieved by addition of 2 mM GLN without affecting GSH levels, in both oocytes and cumulus cells. At 3 mM, the degree of cumulus expansion was lower and the GSH levels decreased. The addition of 2 mM GLN improves cleavage and blastocyst rates, whereas no differences were found between O, 1, and 3 mM GLN. Moreover, the GSH content in 6- to 8-cell embryos was similar at any GLN concentrations. In order to study the relationship between GSH and cumulus expansion: 6-diazo-5-oxo-1-norleucine (DON), an inhibitor of hexosamine synthesis, or buthionine sulfoximide (BSO), an inhibitor of GSH synthesis, either alone or with GLN was added to IVM medium. GSH level was not affected by the presence of DON. However, the degree of cumulus expansion was reduced in the presence of BSO. In conclusion, bovine oocytes matured in the presence of 2 mM GLN improve their capacity for subsequent embryo development. Nevertheless, GSH level was altered when GLN was added to IVM medium at a high concentration with a reduction in the degree of cumulus expansion. This study provides evidence that optimal cumulus expansion in vitro is partially dependent on hexosamine production and intracellular GSH content.

摘要

谷氨酰胺(GLN)是己糖胺合成的代谢前体,据报道,在培养基中添加谷氨酰胺可促进卵丘扩展。谷氨酰胺和半胱氨酸共用同一转运系统。过量的细胞外谷氨酰胺可能作为半胱氨酸摄取的竞争性抑制剂,并刺激细胞内半胱氨酸流失,从而干扰谷胱甘肽(GSH)的合成。本实验旨在评估体外成熟(IVM)过程中1-3 mM谷氨酰胺对牛卵丘扩展、卵母细胞和卵丘细胞内GSH水平以及随后胚胎发育至囊胚阶段的影响。此外,还测定了6-8细胞期胚胎中的GSH含量,并研究了卵丘扩展与GSH合成之间的可能关系。完整的卵丘-卵母细胞复合体培养24小时,在IVM之前或之后,通过计算机图像数字化系统测量卵丘扩展情况。IVM/IVF牛卵母细胞培养至6-8细胞期胚胎以评估GSH含量,或培养8天至囊胚阶段以评估胚胎发育情况。通过酶法测定卵母细胞、卵丘细胞和6-8细胞期胚胎中的总GSH含量。添加2 mM谷氨酰胺可实现最大程度的扩展,且不影响卵母细胞和卵丘细胞中的GSH水平。添加3 mM时,卵丘扩展程度较低,GSH水平下降。添加2 mM谷氨酰胺可提高卵裂率和囊胚率,而0、1和3 mM谷氨酰胺之间未发现差异。此外,在任何谷氨酰胺浓度下,6-8细胞期胚胎中的GSH含量均相似。为了研究GSH与卵丘扩展之间的关系:将己糖胺合成抑制剂6-重氮-5-氧代-1-正亮氨酸(DON)或GSH合成抑制剂丁硫氨酸亚砜胺(BSO)单独或与谷氨酰胺一起添加到IVM培养基中。DON的存在不影响GSH水平。然而,BSO的存在会降低卵丘扩展程度。总之,在2 mM谷氨酰胺存在下成熟的牛卵母细胞,其随后的胚胎发育能力得到提高。然而,当在IVM培养基中添加高浓度谷氨酰胺时,GSH水平会发生改变,同时卵丘扩展程度降低。本研究提供了证据,表明体外最佳卵丘扩展部分依赖于己糖胺的产生和细胞内GSH含量。

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