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与序贯培养相比,改良的单一培养体系可提高囊胚质量和胚胎发育。

Improved Murine Blastocyst Quality and Development in a Single Culture Medium Compared to Sequential Culture Media.

机构信息

Division of Reproductive and Perinatal Research, Department of Obstetrics, Gynecology and Women's Health, School of Medicine, Columbia, MO, USA Division of Animal Sciences, College of Agriculture, Food and Natural Resources, Columbia, MO, USA.

Division of Reproductive and Perinatal Research, Department of Obstetrics, Gynecology and Women's Health, School of Medicine, Columbia, MO, USA.

出版信息

Reprod Sci. 2016 Mar;23(3):310-7. doi: 10.1177/1933719115618281. Epub 2015 Dec 13.

Abstract

OBJECTIVE

Validate single versus sequential culture media for murine embryo development.

DESIGN

Prospective laboratory experiment.

SETTING

Assisted Reproduction Laboratory.

ANIMALS

Murine embryos.

INTERVENTIONS

Thawed murine zygotes cultured for 3 or 5 days (d3 or d5) in single or sequential embryo culture media developed for human in vitro fertilization.

MAIN OUTCOME MEASURES

On d3, zygotes developing to the 8 cell (8C) stage or greater were quantified using 4',6-diamidino-2-phenylindole (DAPI), and quality was assessed by morphological analysis. On d5, the number of embryos reaching the blastocyst stage was counted. DAPI was used to quantify total nuclei and inner cell mass nuclei. Localization of ubiquitin C-terminal hydrolase L1 (UCHL1) and ubiquitin C-terminal hydrolase L3 (UCHL3) was reference points for evaluating cell quality.

RESULTS

Comparing outcomes in single versus to sequential media, the odds of embryos developing to the 8C stage on d3 were 2.34 time greater (P = .06). On d5, more embryos reached the blastocyst stage (P = <.0001), hatched, and had significantly more trophoblast cells (P = .005) contributing to the increased total cell number. Also at d5, localization of distinct cytoplasmic UCHL1 and nuclear UCHL3 was found in high-quality hatching blastocysts. Localization of UCHL1 and UCHL3 was diffuse and inappropriately dispersed throughout the cytoplasm in low-quality nonhatching blastocysts.

CONCLUSIONS

Single medium yields greater cell numbers, an increased growth rate, and more hatching of murine embryos. Cytoplasmic UCHL1 and nuclear UHCL3 localization patterns were indicative of embryo quality. Our conclusions are limited to murine embryos but one might speculate that single medium may also be more beneficial for human embryo culture. Human embryo studies are needed.

摘要

目的

验证用于小鼠胚胎发育的单一与连续培养介质的效果。

设计

前瞻性实验室实验。

设置

辅助生殖实验室。

动物

小鼠胚胎。

干预措施

解冻的小鼠胚胎在专为人类体外受精开发的单一或连续胚胎培养介质中培养 3 或 5 天(d3 或 d5)。

主要观察指标

在 d3 时,使用 4',6-二脒基-2-苯基吲哚(DAPI)对发育到 8 细胞(8C)阶段或更高阶段的受精卵进行定量,并通过形态分析评估质量。在 d5 时,计数达到囊胚阶段的胚胎数量。DAPI 用于定量总核和内细胞团核。泛素 C 端水解酶 L1(UCHL1)和泛素 C 端水解酶 L3(UCHL3)的定位是评估细胞质量的参考点。

结果

与连续介质相比,在单一介质中胚胎发育到 8C 阶段的可能性增加 2.34 倍(P =.06)。在 d5 时,更多的胚胎达到囊胚阶段(P <.0001)、孵化,并且显著增加了滋养层细胞(P =.005),这导致总细胞数增加。同样在 d5 时,在高质量孵化囊胚中发现了明显的细胞质 UCHL1 和核 UCHL3 定位。在低质量非孵化囊胚中,UCHL1 和 UCHL3 定位于弥散且分布不当的细胞质中。

结论

单一培养基可产生更多的细胞数量、增加的生长速度和更多的小鼠胚胎孵化。细胞质 UCHL1 和核 UHCL3 的定位模式表明胚胎质量。我们的结论仅限于小鼠胚胎,但人们可能推测单一培养基对人类胚胎培养也可能更有益。需要进行人类胚胎研究。

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