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MicroRNA-9119 regulates cell viability of granulosa cells in polycystic ovarian syndrome via mediating Dicer expression.

MicroRNA-9119 通过介导 Dicer 表达调节多囊卵巢综合征颗粒细胞的细胞活力。

  • 影响因子:2.78
  • DOI:10.1007/s11010-019-03678-6
  • 作者列表:"Ding Y","He P","Li Z
  • 发表时间:2020-02-01
Abstract

:Polycystic ovary syndrome (PCOS) is a hormonal disorder common among women of reproductive age. Although much is understood concerning the pathology of PCOS, further investigation into the influence of microribonucleic acids (miRNAs) on the proliferation of ovarian granulosa cells (GCs) is needed. This study investigated the role of specific miRNAs in ovarian dysfunction of PCOS and its effect on the proliferation of GCs. Initially, miRNA profiling was performed on the ovarian cortexes of 15 rats in which PCOS had been induced and 15 rats without PCOS (non-PCOS). This mechanical study was performed on ovarian GCs extracted from human chorionic gonadotrophin (hCG)-induced rats. Insulin was used to treat GCs to establish the PCOS cell model. Increased Equus caballus mir-9119 expression was observed and confirmed in the insulin-induced model of PCOS in GCs (GC-PCOS) as well as in the hCG-induced rats when compared to non-PCOS rats and cells. Observation and confirmation were carried out through both miRNA array and quantitative PCR. In contrast, downregulation of the nuclear factor kappa B (NFκB) p65 was observed in the PCOS cell model. Additionally, annexin V, FITC, and propidium iodide flow cytometry showed overexpression of miR-9119-induced apoptosis. In this study, we revealed that miR-9119 inhibition regulates p65 expression levels in insulin-treated GCs by binding to the 3'-untranslated of p65. Additionally, regulation of p65 expression was positively correlated with the expression of the double-stranded RNA endoribonuclease DICER. Moreover, RNA silencing/overexpression of p65 affected the functional role of miR-9119. In conclusion, GCs of PCOS, the expression of miR-9119, and targeted NFκB/p65-DICER axis are upregulated in order to maintain cell viability and prevent apoptosis, thereby promoting Anti-Müllerian hormone production in GCs. This study may provide a new understanding of the mechanism of GC dysfunction.

摘要

: 多囊卵巢综合征 (PCOS) 是一种生殖年龄妇女中常见的激素紊乱。虽然对 PCOS 的病理有很多了解,但需要进一步研究微小核糖核酸 (miRNAs) 对卵巢颗粒细胞 (GCs) 增殖的影响。本研究探讨特异性 miRNAs 在 PCOS 卵巢功能障碍中的作用及其对 GCs 增殖的影响。最初,对诱导 PCOS 的 15 只大鼠和未诱导 PCOS 的 15 只大鼠 (非 PCOS) 的卵巢皮质进行 miRNA 分析。本机械研究是从人绒毛膜促性腺激素 (hCG) 诱导的大鼠中提取的卵巢 GCs。用胰岛素治疗 GCs 建立 PCOS 细胞模型。在胰岛素诱导的 GCs (GC-PCOS) PCOS 模型中观察到并证实了马蹄 mir-9119 表达增加以及在 hCG 诱导的大鼠与非 PCOS 大鼠和细胞相比。通过 miRNA 阵列和定量 PCR 进行观察和确认。相反,在 PCOS 细胞模型中观察到核因子 κ B (nf κ B) p65 的下调。此外,annexin V 、 FITC 和碘化丙啶流式细胞术显示过表达 miR-9119-induced 凋亡。在这项研究中,我们揭示了 miR-9119 抑制通过与 p65 的 3 '-未翻译结合来调节胰岛素处理的 GCs 中的 p65 表达水平。此外,p65 的表达调控与双链 RNA 核酸内切酶 DICER 的表达呈正相关。此外,RNA 沉默/过表达 p65 影响 miR-9119 的功能作用。总之,PCOS 的 GCs 、 miR-9119 的表达和靶向 nf κ b/p65-DICER 轴上调,以维持细胞活力和防止细胞凋亡,从而促进 GCs 中的抗苗勒管激素产生。本研究可能对 GC 功能障碍的机制提供新的认识。

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相关文献
影响因子:3.62
发表时间:2020-01-15
DOI:10.1016/j.mce.2019.110611
作者列表:["Makrinou E","Drong AW","Christopoulos G","Lerner A","Chapa-Chorda I","Karaderi T","Lavery S","Hardy K","Lindgren CM","Franks S"]

METHODS:Polycystic Ovary Syndrome (PCOS) is the most common endocrine disorder amongst women of reproductive age, whose aetiology remains unclear. To improve our understanding of the molecular mechanisms underlying the disease, we conducted a genome-wide DNA methylation profiling in granulosa lutein cells collected from 16 women suffering from PCOS, in comparison to 16 healthy controls. Samples were collected by follicular aspiration during routine egg collection for IVF treatment. Study groups were matched for age and BMI, did not suffer from other disease and were not taking confounding medication. Comparing women with polycystic versus normal ovarian morphology, after correcting for multiple comparisons, we identified 106 differentially methylated CpG sites with p-values <5.8 × 10 that were associated with 88 genes, several of which are known to relate either to PCOS or to ovarian function. Replication and validation of the experiment was done using pyrosequencing to analyse six of the identified differentially methylated sites. Pathway analysis indicated potential disruption in canonical pathways and gene networks that are, amongst other, associated with cancer, cardiogenesis, Hedgehog signalling and immune response. In conclusion, these novel findings indicate that women with PCOS display epigenetic changes in ovarian granulosa cells that may be associated with the heterogeneity of the disorder.

翻译标题与摘要 下载文献
影响因子:2.68
发表时间:2020-02-01
DOI:10.1080/14656566.2019.1701655
作者列表:["Vatopoulou A","Tziomalos K"]

METHODS::Introduction: Approximately 1% of adolescents have polycystic ovary syndrome (PCOS) and almost 40-70% of these patients are overweight or obese. Obese adolescents with PCOS have more severe insulin resistance and hyperandrogenemia, a more adverse lipid profile and a worse quality of life than normal-weight adolescents with PCOS. Accordingly, weight loss is an important component of the management of these patients.Areas covered: The authors discuss the different options for weight loss in obese adolescents with PCOS. Lifestyle changes appear to be effective but adherence to this intervention is suboptimal. There are also limited data regarding the optimal diet in this population. Few small studies have evaluated the effects of pharmacotherapy in these patients. Conflicting data have been reported regarding the effects of metformin on body weight. Notably, agents that have been approved for weight loss in adults have not been evaluated in adolescents with PCOS.Expert opinion: More studies are needed to identify the most appropriate diet for obese adolescents with PCOS. Well-designed randomized controlled studies are also needed to define the safety and efficacy of pharmacotherapy in this population.

翻译标题与摘要 下载文献
影响因子:2.78
发表时间:2020-02-01
DOI:10.1007/s11010-019-03678-6
作者列表:["Ding Y","He P","Li Z"]

METHODS::Polycystic ovary syndrome (PCOS) is a hormonal disorder common among women of reproductive age. Although much is understood concerning the pathology of PCOS, further investigation into the influence of microribonucleic acids (miRNAs) on the proliferation of ovarian granulosa cells (GCs) is needed. This study investigated the role of specific miRNAs in ovarian dysfunction of PCOS and its effect on the proliferation of GCs. Initially, miRNA profiling was performed on the ovarian cortexes of 15 rats in which PCOS had been induced and 15 rats without PCOS (non-PCOS). This mechanical study was performed on ovarian GCs extracted from human chorionic gonadotrophin (hCG)-induced rats. Insulin was used to treat GCs to establish the PCOS cell model. Increased Equus caballus mir-9119 expression was observed and confirmed in the insulin-induced model of PCOS in GCs (GC-PCOS) as well as in the hCG-induced rats when compared to non-PCOS rats and cells. Observation and confirmation were carried out through both miRNA array and quantitative PCR. In contrast, downregulation of the nuclear factor kappa B (NFκB) p65 was observed in the PCOS cell model. Additionally, annexin V, FITC, and propidium iodide flow cytometry showed overexpression of miR-9119-induced apoptosis. In this study, we revealed that miR-9119 inhibition regulates p65 expression levels in insulin-treated GCs by binding to the 3'-untranslated of p65. Additionally, regulation of p65 expression was positively correlated with the expression of the double-stranded RNA endoribonuclease DICER. Moreover, RNA silencing/overexpression of p65 affected the functional role of miR-9119. In conclusion, GCs of PCOS, the expression of miR-9119, and targeted NFκB/p65-DICER axis are upregulated in order to maintain cell viability and prevent apoptosis, thereby promoting Anti-Müllerian hormone production in GCs. This study may provide a new understanding of the mechanism of GC dysfunction.

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