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牛囊胚的氨基酸代谢:性别和活力的生物标志物。

Amino acid metabolism of bovine blastocysts: a biomarker of sex and viability.

机构信息

Department of Biology (Area 3), University of York, York, North Yorkshire YO105YW, UK.

出版信息

Mol Reprod Dev. 2010 Mar;77(3):285-96. doi: 10.1002/mrd.21145.

Abstract

The ratio of male/female embryos may be modified by environmental factors such as maternal diet in vivo and the composition of embryo culture media in vitro. We have used amino acid profiling, a noninvasive marker of developmental potential to compare the effect of sex on the metabolism of bovine blastocysts conceived in vivo and in vitro. Blastocysts were incubated individually for 24 hr in a close-to-physiological mixture of amino acids and the depletion or appearance of 18 amino acids measured using HPLC. Blastocysts were then sexed by PCR. Amino acid depletion by in vitro-produced blastocysts and expanded blastocysts was higher than in embryos conceived in vivo (P = 0.02). When cultured in vitro, female embryos exhibited increased depletion of arginine, glutamate, and methionine and appearance of glycine, while male embryos displayed increased depletion of phenylalanine, tyrosine, and valine. Overall, in vitro-produced blastocysts exhibited sex-specific differences in metabolic profiles of 7 out of 18 amino acids; in vivo-produced, in 2 out of 18. These differences had disappeared by the expanded blastocyst stages. We have also shown that amino acid metabolism can predict the ability of bovine zygotes to develop to the blastocyst stage, providing "proof of principle" for the use of this technology in clinical IVF to select single embryos for transfer and thereby avoid the problem of multiple births.

摘要

胚胎的雌雄比例可能会受到环境因素的影响,例如体内母体饮食和体外胚胎培养介质的组成。我们使用氨基酸谱分析,这是一种非侵入性的发育潜能标志物,来比较体内和体外受精的牛胚胎的性别对代谢的影响。将囊胚在接近生理的氨基酸混合物中单独孵育 24 小时,并使用 HPLC 测量 18 种氨基酸的消耗或出现情况。然后通过 PCR 对囊胚进行性别鉴定。体外产生的囊胚和扩张囊胚的氨基酸消耗比体内受精的胚胎更高(P = 0.02)。当在体外培养时,雌性胚胎表现出精氨酸、谷氨酸和蛋氨酸的消耗增加以及甘氨酸的出现增加,而雄性胚胎则表现出苯丙氨酸、酪氨酸和缬氨酸的消耗增加。总体而言,体外产生的囊胚在 18 种氨基酸中有 7 种表现出性别特异性的代谢谱差异;而体内产生的囊胚只有 2 种。这些差异在扩张囊胚阶段已经消失。我们还表明,氨基酸代谢可以预测牛受精卵发育为囊胚的能力,为在临床 IVF 中使用该技术选择单个胚胎进行移植提供了“原理证明”,从而避免多胎妊娠的问题。

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