极化与非极化人子宫内膜单层培养系统对小鼠胚胎发育的影响。

Mohamad Reza Baghaban Eslami Nejad, Mojtaba Rezazadeh Valojerdi, Saeed Kazemi Ashtiani
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引用次数: 340

摘要

背景:胚胎与多种体细胞共培养已被认为是改善胚胎发育的一种有前途的方法。尽管有许多关于雌性生殖道上皮细胞在共培养系统中对胚胎发育的有益作用的报道,但很少有人知道这些细胞在极化条件下培养对胚胎生长的影响。我们的研究评估了体外极化细胞对胚胎前发育的影响。方法:人类子宫内膜组织从良性全子宫切除术切除的子宫标本中获得。上皮细胞被迅速分离并培养在包被微孔过滤器插入物(极化)或塑料表面(非极化)的细胞外基质凝胶(ECM-Gel)上。通过免疫组织化学证实塑料上培养细胞的上皮性质,透射电镜(TEM)观察ECM-Gel上培养细胞的极化情况。然后冲洗NMRI超排卵小鼠的一个或两个细胞期胚胎,并将其单独置于极化或非极化细胞和培养基中培养。每天测定所有胚胎的发育速率并进行统计学比较。培养结束后,显微镜下观察各组膨大囊胚的滋养外胚层(TE)和内细胞团(ICM)。结果:在ECM-Gel上培养的子宫内膜上皮细胞呈高度极化的柱状,而在塑料表面培养的细胞呈扁平状。在极化单层上培养的双细胞胚胎发育率高于非极化单层细胞。差异无统计学意义;尽管如此,来自极化单层的囊胚,与非极化组相比,具有显著更高的平均细胞数。极化组和非极化组单细胞胚胎发育无统计学差异。结论:极化细胞对双细胞期体外胚胎发育的促进作用主要体现在质量上(增加囊胚细胞数量),而不是发育速度上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A comparison of polarized and non-polarized human endometrial monolayer culture systems on murine embryo development.

A comparison of polarized and non-polarized human endometrial monolayer culture systems on murine embryo development.

BACKGROUND: Co-culture of embryos with various somatic cells has been suggested as a promising approach to improve embryo development. Despite numerous reports regarding the beneficial effects of epithelial cells from the female genital tract on embryo development in a co-culture system, little is known about the effect of these cells when being cultured under a polarized condition on embryo growth. Our study evaluated the effects of in vitro polarized cells on pre-embryo development. METHODS: Human endometrial tissue was obtained from uterine specimens excised at total hysterectomy performed for benign indications. Epithelial cells were promptly isolated and cultured either on extra-cellular matrix gel (ECM-Gel) coated millipore filter inserts (polarized) or plastic surfaces (non-polarized). The epithelial nature of the cells cultured on plastic was confirmed through immunohistochemistry, and polarization of cells cultured on ECM-Gel was evaluated by transmission electron microscopy (TEM). One or two-cell stage embryos of a superovulated NMRI mouse were then flushed and placed in culture with either polarized or non-polarized cells and medium alone. Development rates were determined for all embryos daily and statistically compared. At the end of the cultivation period, trophectoderm (TE) and inner cell mass (ICM) of expanded blastocysts from each group were examined microscopically. RESULTS: Endometrial epithelial cells cultured on ECM-Gel had a highly polarized columnar shape as opposed to the flattened shape of the cells cultured on a plastic surface. The two-cell embryos cultured on a polarized monolayer had a higher developmental rate than those from the non-polarized cells. There was no statistically significant difference; still, the blastocysts from the polarized monolayer, in comparison with the non-polarized group, had a significantly higher mean cell number. The development of one-cell embryos in the polarized and non-polarized groups showed no statistically significant difference. CONCLUSION: Polarized cells could improve in vitro embryo development from the two-cell stage more in terms of quality (increasing blastocyst cellularity) than in terms of developmental rate.

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