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体外培养与代谢之间的动力学:胚胎对环境变化的适应。

The dynamics between in vitro culture and metabolism: embryonic adaptation to environmental changes.

机构信息

Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.

Center for Natural and Human Sciences, Federal University of ABC, Av. dos Estados, 5001, Bairro Santa Terezinha, Bloco A, Lab 502-3, Santo André, SP, CEP: 09210-580, Brazil.

出版信息

Sci Rep. 2020 Sep 24;10(1):15672. doi: 10.1038/s41598-020-72221-1.

Abstract

Previous studies have discussed the importance of an optimal range of metabolic activity during preimplantation development. To avoid factors than can trigger an undesirable trajectory, it is important to learn how nutrients and metabolites interact to help launching the correct developmental program of the embryo, and how much the in vitro culture system can impair this process. Here, using the bovine model, we describe a factorial experimental design used to investigate the biochemical and molecular signature of embryos in response to different combinations of morphological features-i.e. speed of development-and external stimuli during in vitro culture-i.e. different oxygen tensions and glucose supplementation. Our analyses demonstrate that the embryos present heterogeneous metabolic responses depending on early morphological phenotypes and the composition of their surroundings. However, despite the contribution of each single stimulus for the embryo phenotype, oxygen tension is determinant for such differences. The lower oxygen environment boosts the metabolism of embryos with faster kinetics, in particular those cultured in lower glucose concentrations.

摘要

先前的研究已经讨论了在胚胎植入前发育过程中代谢活性的最佳范围的重要性。为了避免可能引发不良轨迹的因素,了解营养物质和代谢物如何相互作用以帮助启动胚胎的正确发育程序,以及体外培养系统在多大程度上会损害这一过程是很重要的。在这里,我们使用牛模型描述了一个析因实验设计,用于研究胚胎对不同形态特征(即发育速度)和体外培养过程中不同氧张力和葡萄糖补充的外部刺激的生化和分子特征的反应。我们的分析表明,胚胎根据早期形态表型和周围环境的组成呈现出异质的代谢反应。然而,尽管每个单一刺激对胚胎表型都有贡献,但氧张力是决定这些差异的关键因素。较低的氧环境促进了具有较快动力学的胚胎的新陈代谢,特别是那些在较低葡萄糖浓度下培养的胚胎。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b32/7518437/6dd2779e9893/41598_2020_72221_Fig1_HTML.jpg

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