组蛋白去甲基化酶JHDM1D、PHF2和PHF8在短期IVC期间接受IVF手术的患者颗粒细胞中的表达模式

Q4 Biochemistry, Genetics and Molecular Biology Medical Journal of Cell Biology Pub Date : 2021-03-01 DOI:10.2478/acb-2021-0001
Rut Bryl, K. Stefańska, B. Chermuła, B. Stelmach, W. Pieńkowski, Jakub Kulus, Joanna Perek, M. Wieczorkiewicz, G. Wąsiatycz, Kornel Ratajczak, L. Pawelczyk, P. Mozdziak, M. Ješeta, R. Spaczyński, D. Bukowska
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引用次数: 1

摘要

摘要颗粒细胞在卵泡发育、成熟和闭锁中起着重要作用。它们是两种最重要的卵巢类固醇,即雌二醇和孕酮的细胞来源,对与卵母细胞的双向交流也至关重要,从而参与卵母细胞生长、发育和功能的调节。越来越多的证据表明,体外培养的颗粒细胞显示出干性和转分化潜力。再加上在体外受精过程中可以很容易地收集GC的这些特性,可能对再生医学和移植学都特别感兴趣。体外细胞培养的建立及其包括分子在内的彻底表征,对于人类颗粒细胞未来在设计工程组织移植物或基于细胞的治疗中的潜在利用至关重要,特别是针对女性不孕不育。尽管如此,颗粒细胞体外培养过程中可能发生的转录组改变在很大程度上仍然没有表征。本研究的目的是检测编码组蛋白去甲基化酶的三个基因在人类颗粒细胞的短期体外细胞培养中的表达变化。研究组包括14名年龄在18-40岁之间接受体外受精(IVF)的患者。使用RT-qPCR技术在体外原代细胞培养24小时、48小时、72小时、96小时、120小时、144小时和168小时后进行表达水平评估。在培养的所有时间点观察到PHF2表达上调,而JHDM1D和PHF8的趋势主要是表达水平下降。需要对更大的人口进行进一步研究,以确认所呈现的趋势。运行标题:选定组蛋白去甲基化酶在人类颗粒细胞中的表达模式
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Histone demethylases JHDM1D, PHF2 and PHF8 expression pattern in granulosa cells obtained from patients undergoing IVF procedure during short-term IVC
Abstract Granulosa cells play an important role in follicle development, maturation, and atresia. They are a cellular source of the two most important ovarian steroids, namely, estradiol and progesterone and are also crucial for bidirectional communication with the oocyte, thus being involved in the regulation of its growth, development and function. Growing body of evidence suggests that granulosa cells cultured in vitro display stemness and transdifferentiation potential. Together with the fact that they can be easily collected during IVF procedures, these properties of GCs may be of particular interest for both regenerative medicine and transplantology. Establishment of in vitro cell culture and its thorough characterization, including molecular, is crucial for future potential utilization of human granulosa cells in design of engineered tissue grafts or cell-based therapies, in particular targeted at female infertility. Nevertheless, the transcriptomic alterations which may occur during in vitro culture of granulosa cells are still largely uncharacterized. The aim of this study was to examine expression changes of three genes encoding histone demethylases which serve as transcription coactivators in short term in vitro cell culture of human granulosa cells. The study groups consisted of 14 patients, aged 18–40 years undergoing in vitro fertilization (IVF). Expression level assessment was performed after 24 h, 48 h, 72 h, 96 h, 120 h, 144 h and 168 h of in vitro primary cell culture utilizing RT-qPCR technique. Upregulation of PHF2 expression in all time points of the culture was observed, whereas the tendency of JHDM1D and PHF8 was mainly to decrease in expression level. Further study on a larger population would be required in order to confirm the presented tendencies. Running title: Expression pattern of selected histone demethylases in human granulosa cells
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Medical Journal of Cell Biology
Medical Journal of Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
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