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大鼠卵母细胞体外成熟方案的开发;简单培养与卵丘细胞单层共培养及其通过孤雌激活/人工激活的发育潜能。

Development of in-vitro maturation protocol for rat oocytes; under simple culture vs co-culture with cumulus cell monolayer and its developmental potential via Parthenogenetic/artificial activation.

机构信息

Laboratory of Theriogenology, Department of Veterinary Clinical Science, College of Veterinary Medicine, Seoul National University, Kwanak-ro 1, Daehak-Dong, Kwanak-Gu, Seoul, 08826, Republic of Korea.

LARTbio corporation, Seoul, Republic of Korea, 06226.

出版信息

BMC Vet Res. 2021 Jan 22;17(1):44. doi: 10.1186/s12917-020-02714-8.

Abstract

BACKGROUND

Murine is the most abundantly used as laboratory animal models. There has been a tremendous amount of research including; their evolution, growth, physiology, disease modeling as well as genomic mapping. Rats and mice are the most widely used among them. Although both rats and mice fall under the same category still both are different a lot too. As regarding in vitro maturation and development mouse studies are well established as compared to rats which still lies in the early phase of development. So, we tried to figure out rat oocytes in vitro maturation and their developmental potential by performing 3 experiments i.e. superovulation, in vitro Maturation as simple culture (COC's only), and COC's & cumulus cells co-culture, which later further developed using parthenogenetic activation after IVM. Female Sprague Dawley rat 3-4 week used for these studies, we hyper-stimulated their ovaries using PMSG and hCG 150 IU/kg each. After that, we collected ovaries via dissection and retrieved oocytes. We matured them in TCM 199 supplemented with FSH, Estrogen, EGF, and Pyruvate. After maturation, we activated them using two types of activators i.e. Ethanol 7%, Ionomycin. After that, we saw and compared their developmental potential in vitro.

RESULTS

Oocytes matured in COC's and Cumulus cell monolayer co-culture (59% ± 4*) showed significantly more even growth and extrusion of the first polar body as compared to the COC's only culture (53.8 ± 7%*). While oocytes activated using Ionomycin showed more promising development until 8 cells/blastocyst level compared to ethanol 7%.

CONCLUSION

we concluded that COC's and cumulus monolayer co-culture is better than COC's only culture. Cumulus monolayer provides extra aid in the absorption of nutrients and supplements thus providing a better environment for oocytes growth. Also, we concluded that matured oocytes showed more developmental capacity after activation via ionomycin compared to ethanol.

摘要

背景

鼠类是最常用于实验室动物模型的物种。已经有大量的研究包括它们的进化、生长、生理学、疾病建模以及基因组图谱。其中,大鼠和小鼠是最广泛使用的。尽管大鼠和小鼠都属于同一类别,但它们之间仍有很大的不同。在体外成熟和发育方面,与仍处于早期发展阶段的大鼠相比,小鼠研究已经很成熟。因此,我们试图通过进行三项实验来确定大鼠卵母细胞的体外成熟及其发育潜力,即超数排卵、简单培养(仅 COC)的体外成熟和 COC 与卵丘细胞共培养,然后在 IVM 后通过孤雌激活进一步发育。我们使用 3-4 周龄的雌性 Sprague Dawley 大鼠进行这些研究,用 PMSG 和 hCG 150IU/kg 分别对其卵巢进行超刺激。之后,通过解剖收集卵巢并回收卵母细胞。我们在添加了 FSH、雌激素、EGF 和丙酮酸钠的 TCM 199 中对其进行成熟。成熟后,我们使用两种激活剂即乙醇 7%和离子霉素对其进行激活。之后,我们观察并比较了它们的体外发育潜力。

结果

与仅 COC 培养(53.8±7%)相比,在 COC 与卵丘细胞单层共培养(59%±4%)中成熟的卵母细胞显示出更均匀的生长和第一极体的排出。与乙醇 7%相比,使用离子霉素激活的卵母细胞在 8 细胞/囊胚水平显示出更有前途的发育。

结论

我们得出结论,COC 与卵丘细胞单层共培养优于仅 COC 培养。卵丘细胞层提供额外的营养和补充吸收帮助,从而为卵母细胞生长提供更好的环境。此外,我们还得出结论,与乙醇相比,经离子霉素激活后的成熟卵母细胞显示出更高的发育能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/038e/7821397/ea8afafbf608/12917_2020_2714_Fig1_HTML.jpg

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