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Equine bone marrow mesenchymal or amniotic epithelial stem cells as feeder in a model for the in vitro culture of bovine embryos

机译:马骨髓间充质或羊膜上皮干细胞作为牛胚胎体外培养模型的饲养细胞

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Various studies have shown that the in vitro culture environment is one of the key determinants of the blastocyst output. In the present study we investigated the effects of co-culturing bovine embryos with equine bone marrow mesenchymal stem cells (BM-MSCs) or equine amniotic epithelial stem cells (AE-SCs) on in vitro blastocysts development. BM specimens were obtained aseptically from sternal aspirates of horses under local anaesthesia and the isolated cells were resuspended in Dulbecco Modified Earle's Medium supplemented with 10 ng/ml of basic fibroblast growth factor (bFGF). Amniotic membranes were obtained from fresh placentas and, to release the AE cells, amniotic fragments were incubated with 0.05% trypsin for 45 min. Separated AE cells were plated in standard culture medium containing 10 ng/ml epidermal growth factor (EGF). Seven hundred and five cumulusa-oocyte complexes were used and, after IVM and IVF, cumulus-free presumptive zygotes were randomly transferred into one of three co-culture systems in which they were cultured up to day 7: (1) co-culture with cumulus cells (control); (2) co-culture with BM-MSCs; and (3) co-culture with AE-SCs. Statistical analyses were performed by ANOVA. Blastocyst developmental rates were significantly different (p < 0.001) between control, AE-SCs and BM-MSCs (respectively 35.45, 41.84 and 30.09%). In conclusion, the AE-SC monolayer create a more suitable microenvironment necessary for inducing local cell activation and proliferation of the growing embryos in comparison with BM-MSCs and cumulus cells. It can be suggested that these cells secrete biologically active substances, including signalling molecules and growth factors of epithelial nature, different to those of the BM cells of mesenchymal origin.
机译:各种研究表明,体外培养环境是胚泡产量的关键决定因素之一。在本研究中,我们研究了牛胚胎与马骨髓间充质干细胞(BM-MSC)或马羊膜上皮干细胞(AE-SCs)共同培养对体外胚泡发育的影响。 BM标本是在局部麻醉下从马的胸骨抽吸物中无菌获得的,并将分离的细胞重悬于补充了10 ng / ml碱性成纤维细胞生长因子(bFGF)的Dulbecco改良Earle培养基中。从新鲜的胎盘获得羊膜,为了释放AE细胞,将羊膜片段与0.05%胰蛋白酶孵育45分钟。将分离的AE细胞接种在含有10ng / ml表皮生长因子(EGF)的标准培养基中。使用了755个卵母细胞-卵母细胞复合物,在IVM和IVF之后,将无卵的假定合子随机转移到三个共培养系统之一中,直到7天:(1)与卵丘细胞(对照); (2)与BM-MSC共培养; (3)与AE-SC共同培养。通过ANOVA进行统计分析。对照,AE-SC和BM-MSC之间的胚泡发育率显着不同(p <0.001)(分别为35.45、41.84和30.09%)。总之,与BM-MSC和卵丘细胞相比,AE-SC单层可创造出更合适的微环境,用于诱导生长中的胚胎的局部细胞活化和增殖。可以认为这些细胞分泌的生物活性物质,包括与间充质来源的BM细胞不同的生物活性物质,包括上皮性的信号分子和生长因子。

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