首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Cell-Secreted Vesicles in Equine Ovarian Follicular Fluid Contain miRNAs and Proteins: A Possible New Form of Cell Communication Within the Ovarian Follicle
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Cell-Secreted Vesicles in Equine Ovarian Follicular Fluid Contain miRNAs and Proteins: A Possible New Form of Cell Communication Within the Ovarian Follicle

机译:在马卵巢细胞分泌囊泡卵泡液含有microrna和蛋白质:一个可能的新形式的细胞通讯卵巢卵泡

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摘要

Proper cell communication within the ovarian follicle is critical for the growth and maturation of a healthy oocyte that can be fertilized and develop into an embryo. Cell communication within the follicle involves many signaling molecules and is affected by maternal age. Recent studies indicate that cell communication can be mediated through secretion and uptake of small membrane-enclosed vesicles. The goals of this study were to 1) identify cell-secreted vesicles (microvesicles and exosomes) containing miRNAs and proteins within ovarian follicular fluid and 2) determine if miRNA level differs in exosomes isolated from follicular fluid in young compared to old mares. We demonstrate the presence of vesicles resembling microvesicles and exosomes in ovarian follicular fluid using transmission electron microscopy and CD63-positive and RNA containing vesicles using flow cytometry. Moreover, proteomics analysis reveals that follicular fluid-isolated exosomes contain both known exosomal proteins and proteins not previously reported in isolated exosomes. MicroRNAs were detected in microvesicle and exosomes preparations isolated from follicular fluid by real-time PCR analysis. Uptake of fluorescent-labeled microvesicles by granulosa cells was examined using in vitro and in vivo approaches. MicroRNA expression profiling reveals that miRNAs in microvesicle and exosome preparations isolated from follicular fluid also are present within surrounding granulosa and cumulus cells. These studies revealed that cell communication within the mammalian ovarian follicle may involve transfer of bioactive material by microvesicles and exosomes. Finally, miRNAs present in exosomes from ovarian follicular fluid varied with the age of the mare, and a number of different miRNAs were detected in young vs. old mare follicular fluid.
机译:适当的卵巢内细胞通讯增长和卵泡是至关重要的健康的卵母细胞的成熟受精和发育成胚胎。在毛囊涉及很多的沟通信号分子,受母亲的影响的年龄。沟通可以通过分泌调节和吸收小membrane-enclosed囊泡。本研究的目标是1)识别细胞分泌小泡(微泡和液内含有microrna和蛋白质卵巢卵泡液和2)确定microrna的水平在不同液隔绝卵泡液中年轻而古老的母马。我们将演示囊泡的存在类似于微泡,在卵巢液卵泡液使用透射电子显微镜和CD63-positive和RNA含有使用流式细胞仪囊泡。蛋白质组学分析表明,滤泡fluid-isolated液同时包含已知的exosomal蛋白质和蛋白质而不是以前在隔离液。发现在微泡和液准备从卵泡液中分离出来了实时PCR分析。使微泡的颗粒使用体外和体内细胞检查方法。microrna在微泡和外来体也准备从卵泡液分离在周围的颗粒和存在积云细胞。哺乳动物卵巢中交流卵泡可能涉及转移的生物活性材料通过微泡和液。从卵巢microrna在液卵泡液随母马的年龄,和许多不同的microrna被检测到年轻的和年老的母马卵泡液。

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