Department of Animal Science, Faculty of Veterinary Sciences, Universidad de Concepcion, Chillan, Chile.
Department of Animal Science, Faculty of Veterinary Sciences, Universidad de Concepcion, Chillan, Chile.
Theriogenology. 2024 Jan 15;214:43-56. doi: 10.1016/j.theriogenology.2023.10.005. Epub 2023 Oct 12.
Extracellular vesicles (EVs) have become important in embryo-maternal communication during early development. The aim of this study was to evaluate the effect of an in vitro system on early bidirectional embryo-maternal communication mediated by EVs. For this purpose, two experiments were performed: one to evaluate the effect of embryonic EVs on maternal cells and the second to determine the effect of maternal EVs on early embryonic development. For the first in vitro (IVP) and in vivo (IVV) experiments, bovine blastocysts were selected and individually cultured for 48 h to collect embryonic EVs secreted during days 7-9 of embryonic development. Embryonic EVs were added to the medium of in vitro-cultured bovine endometrial cells to evaluate their effect on the expression pattern of genes associated with endometrial function and response to interferon tau (IFNT). Non-classical interferon-stimulated genes (ISGs) were only induced by in vitro-derived embryos. In the second experiment, EVs released by endometrial cells cultured in vitro (EVC) and collected from uterine fluid (EV-UF) of cows in the early luteal phase were added to the culture medium of bovine embryos produced in vitro during days 5-9 of development. The effect of maternal in vitro or in vivo-derived EVs differs in the quality of bovine embryos produced in vitro during the pre-implantation period. The expression of IFNT in bovine embryos is increased by the effect of EV-UF treatment. Additionally, EV-UF treatment induces a sustained increase in diameter during embryonic development and a tendency towards a greater number of expanded and hatched blastocysts. However, some genes related to embryo quality are induced by EVC treatment.
细胞外囊泡 (EVs) 在胚胎-母体发育早期的通讯中变得非常重要。本研究旨在评估体外系统对 EVs 介导的早期双向胚胎-母体通讯的影响。为此,进行了两项实验:一项是评估胚胎 EVs 对母体细胞的影响,第二项是确定母体 EVs 对早期胚胎发育的影响。在第一个体外 (IVP) 和体内 (IVV) 实验中,选择牛囊胚并单独培养 48 小时,以收集胚胎在发育第 7-9 天期间分泌的 EVs。将胚胎 EVs 添加到体外培养的牛子宫内膜细胞的培养基中,以评估它们对与子宫内膜功能和对干扰素 tau (IFNT) 反应相关的基因表达模式的影响。非经典干扰素刺激基因 (ISGs) 仅由体外来源的胚胎诱导。在第二个实验中,将体外培养的子宫内膜细胞释放的 EVs (EVC) 和从早期黄体期奶牛子宫液中收集的 EV-UF 添加到体外培养的牛胚胎的培养基中,在发育第 5-9 天期间。体外或体内来源的母体 EVs 对体外生产的牛胚胎在植入前阶段的质量有不同的影响。IFNT 在牛胚胎中的表达通过 EV-UF 处理增加。此外,EV-UF 处理诱导胚胎发育过程中直径持续增加,并倾向于产生更多扩张和孵化的囊胚。然而,一些与胚胎质量相关的基因是由 EVC 处理诱导的。