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:大麻卵巢卵泡液中的细胞分泌的囊泡含有miRNA和蛋白质:卵巢卵泡内可能的新形式的细胞连通形式

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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:卵巢卵泡内的适当细胞通信对于可以施肥和发展到胚胎的健康卵母细胞的生长和成熟至关重要。卵泡内的细胞通信涉及许多信号分子,受孕产量的影响。最近的研究表明,可以通过小膜封囊泡的分泌和摄取来介导细胞通信。本研究的目标为1)鉴定含有miRNA的细胞分泌的囊泡(微泡和外来体)卵巢滤液中的蛋白质,2)确定与旧母马相比从卵泡流体中分离的外来体内的miRNA水平是否不同。我们证明了使用流式细胞术的透射电子显微镜和CD63阳性和RNA在卵巢滤液中类似于微胶囊和外来的囊泡的存在。此外,蛋白质组学分析表明,滤泡流体分离的外出蛋白含有已知的外泌体蛋白和未在分离的外泌体中报道的蛋白质。通过实时PCR分析在微溶解体和外来物质制剂中检测微小RNA和从滤液中分离的制剂。使用体外和体内方法检查通过颗粒细胞的荧光标记的微铅的吸收。 MicroRNA表达分析表明,从卵泡流体分离的微肠池和外出制剂中的miRNA也存在于周围的颗粒组和积云细胞内。这些研究表明,哺乳动物卵巢卵泡内的细胞通信可能涉及通过微泡和外泌体的生物活性物质的转移。最后,在卵巢卵泡液中存在的miRNA与母马的年龄不同,并且在年轻的母马卵泡液中检测了许多不同的miRNA。

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