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培养条件和受孕方式对小鼠活产率的影响。

Effect of culture conditions and method of conception on mouse live birth rate.

作者信息

Xiao Zhuoni, Donjacour Annemarie, Harner Royce, Simbulan Rhodel, Kao Chia-Ning, Ruggeri Elena, Liu Xiaowei, Maltepe Emin, Rinaudo Paolo

机构信息

Center for Reproductive Medicine, Renmin Hospital of Wuhan University, Wuhan, People's Republic of China; Department of Obstetrics, Gynecology, and Reproductive Sciences, University of California, San Francisco, California.

Department of Obstetrics, Gynecology, and Reproductive Sciences, University of California, San Francisco, California.

出版信息

F S Sci. 2020 Nov;1(2):132-141. doi: 10.1016/j.xfss.2020.10.002. Epub 2020 Oct 13.

Abstract

OBJECTIVE

To understand in a mouse model whether there are differences in the decidua and live birth rate after transfer of blastocysts generated by in vitro fertilization (IVF) or by superovulation with spontaneous mating into unstimulated recipients.

DESIGN

Animal experiment.

SETTING

University-affiliated tertiary hospital.

ANIMAL(S): Mice.

INTERVENTION(S): IVF embryos were generated and cultured in either Whitten medium (WM, suboptimal conditions) and 20% O or KSOM medium with amino acids (KAA, optimal conditions) and 5% O. The control blastocysts from superovulated mice were flushed out of the uterus 3.5 days (E3.5) after mating (FB group). The resulting blastocysts were transferred to nonsuperovulated CF1 recipients mated to vasectomized males. To understand whether anomalies of decidua were present, the expression of genes involved in decidual development and inflammation was analyzed at E7.5 and E18.5. Similarly, immunostaining was used to evaluate whether the pathways involved in activation of mTORC1 (p-S6) and Cox2 signaling (Cox 2 staining) were altered.

MAIN OUTCOME MEASURE(S): Live birth rate, gene expression, and immunostaining of decidua.

RESULT(S): Implantation rates at E7.5 were similar, but in vivo embryos (FB groups) were predicted to result in live births 3.3 times higher (2.2-5.1) and 6.6 times higher (4.7-9.3) compared with optimal and suboptimal cultures, respectively. Expression of genes involved in decidual development and inflammation or localization and intensity of staining for p-S6 (mTOR pathway), or inflammation (Cox 2 pathway) were not different among the groups.

CONCLUSION(S): The predicted live birth rate was decreased in mouse embryos generated by IVF compared with embryos generated by mating, whereas the implantation rate was not different. Suboptimal culture conditions resulted in lower birth rate. We did not find evidence of abnormalities in decidualization that could explain these findings. These data indicate that blastocysts cultured in stressful conditions are less competent, suggesting that decreasing the number of embryonic manipulations may result in higher live birth rates.

摘要

目的

在小鼠模型中了解体外受精(IVF)产生的囊胚或通过超排卵与自然交配产生的囊胚移植到未受刺激的受体后,蜕膜和活产率是否存在差异。

设计

动物实验。

地点

大学附属三级医院。

动物

小鼠。

干预措施

IVF胚胎在Whitten培养基(WM,次优条件)和20%氧气或含氨基酸的KSOM培养基(KAA,最佳条件)和5%氧气中生成并培养。来自超排卵小鼠的对照囊胚在交配后3.5天(E3.5)从子宫中冲洗出来(FB组)。将所得囊胚移植到与输精管结扎雄性交配的未超排卵CF1受体中。为了解是否存在蜕膜异常,在E7.5和E18.5分析参与蜕膜发育和炎症的基因表达。同样,免疫染色用于评估参与mTORC1激活(p-S6)和Cox2信号传导(Cox 2染色)的途径是否改变。

主要观察指标

活产率、蜕膜的基因表达和免疫染色。

结果

E7.5时的着床率相似,但与最佳和次优培养相比,体内胚胎(FB组)预计活产率分别高3.3倍(2.2 - 5.1)和6.6倍(4.7 - 9.3)。各组中参与蜕膜发育和炎症的基因表达或p-S6(mTOR途径)或炎症(Cox 2途径)的染色定位和强度无差异。

结论

与交配产生的胚胎相比,IVF产生的小鼠胚胎预计活产率降低,而着床率无差异。次优培养条件导致出生率较低。我们没有发现蜕膜化异常可解释这些发现的证据。这些数据表明,在应激条件下培养的囊胚能力较低,提示减少胚胎操作次数可能导致更高的活产率。

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