首页> 外文期刊>Cell and Tissue Research >Proteomic sift through serum and endometrium profiles unraveled signature proteins associated with subdued fertility and dampened endometrial receptivity in women with polycystic ovary syndrome
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Proteomic sift through serum and endometrium profiles unraveled signature proteins associated with subdued fertility and dampened endometrial receptivity in women with polycystic ovary syndrome

机译:蛋白质组学筛选通过血清和子宫内膜剖面未加工签名蛋白,与多囊卵巢综合征患有潜较低的生育率和抑制子宫内膜接受性相关的签名蛋白

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The objective of this study is to discern the proteomic differences responsible for hampering the receptivity of endometrium and subduing the fertility of females with polycystic ovary syndrome in analogy to healthy fertile females. This study was designed in collaboration with Hakeem Abdul Hameed Centenary Hospital affiliated to Jamia Hamdard, New Delhi, India. Serum samples were taken from infertile PCOS subjects (n = 6) and fertile control subjects (n = 6) whereas endometrial tissue samples were recruited from ovulatory PCOS (n = 4), anovulatory PCOS (n = 4) and normal healthy fertile control subjects (n = 4) for proteomic studies. Additionally, endometrial biopsies from healthy fertile control (n = 8), PCOS with infertility (n = 6), unexplained infertility (n = 3) and endometrial hyperplasia (n = 3) were taken for validation studies. Anthropometric, biochemical and hormonal evaluation was done for all the subjects enrolled in this study. Protein profiles were generated through 2D-PAGE and differential proteins analyzed with PD-QUEST software followed by identification with MALDI-TOF MS protein mass fingerprinting. Validation of identified proteins was done through RT-PCR relative expression analysis. Protein profiling of serum revealed differential expression of proteins involved in transcriptional regulation, embryogenesis, DNA repair, decidual cell ploidy, immunomodulation, intracellular trafficking and degradation processes. Proteins involved in cell cycle regulation, cellular transport and signaling, DNA repair, apoptotic processes and mitochondrial metabolism were found to be differentially expressed in endometrium. The findings of this study revealed proteins that hold strong candidature as potential drug targets to regulate the cellular processes implicating infertility and reduced receptivity of endometrium in women with polycystic ovary syndrome.
机译:本研究的目的是辨别蛋白质组学差异,负责阻碍子宫内膜的接受性,并使女性与多囊卵巢综合征类似于健康肥沃的女性的雌性卵巢综合征。该研究是与印度新德里新德里贾米亚哈德德附属的哈克姆阿卜杜勒百合百年医院合作设计的。从不育pCOS受试者(n = 6)和育种对照组(n = 6)取出血清样品,而子宫内膜组织样品被从排卵PCOS(n = 4),防护性PCOS(n = 4)和正常的健康育种对象中募集(n = 4)用于蛋白质组学研究。另外,来自健康肥沃对照(n = 8)的子宫内膜活检,PCOS具有不孕症(n = 6),未解释的不孕症(n = 3)和子宫内膜增生(n = 3)用于验证研究。对本研究中的所有受试者进行了人类测定,生化和激素评估。通过2D-PAGE和差分蛋白质产生蛋白质分布,并用PD-Quest软件分析,然后用MALDI-TOF MS蛋白质质量指纹识别鉴定。通过RT-PCR相对表达分析进行鉴定的蛋白质验证。血清的蛋白质分析显示蛋白质的差异表达参与转录调节,胚胎发生,DNA修复,蜕膜倍增性,免疫调节,细胞内运输和降解过程。发现细胞周期调节,细胞传输和信号,DNA修复,凋亡过程和线粒体代谢的蛋白质在子宫内膜中差异表达。本研究的发现揭示了蛋白质,其将强烈的候选患者视为潜在的药物靶标,以调节细胞过程意识到具有多囊卵巢综合征的妇女患者的不孕症和降低的接受性。

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