Cross Courtney E, Tolba Mai F, Rondelli Catherine M, Xu Meixiang, Abdel-Rahman Sherif Z
Department of Obstetrics and Gynecology, The University of Texas Medical Branch, Galveston, TX 77555-1066, USA.
Department of Pharmacology and Toxicology, Faculty of Pharmacy, Ain Shams University, Cairo 11566, Egypt.
Biomed Res Int. 2015;2015:257090. doi: 10.1155/2015/257090. Epub 2015 Aug 3.
The relationship between oxidative stress and miRNA changes in placenta as a potential mechanism involved in preeclampsia (PE) is not fully elucidated. We investigated the impact of oxidative stress on miRNAs and mRNA expression profiles of genes associated with PE in villous 3A first trimester trophoblast cells exposed to H2O2 at 12 different concentrations (0-1 mM) for 0.5, 4, 24, and 48 h. Cytotoxicity, determined using the SRB assay, was used to calculate the IC50 of H2O2. RNA was extracted after 4 h exposure to H2O2 for miRNA and gene expression profiling. H2O2 exerted a concentration- and time-dependent cytotoxicity on 3A trophoblast cells. Short-term exposure of 3A cells to low concentration of H2O2 (5% of IC50) significantly altered miRNA profile as evidenced by significant changes in 195 out of 595 evaluable miRNAs. Tool for annotations of microRNAs (TAM) analysis indicated that these altered miRNAs fall into 43 clusters and 34 families, with 41 functions identified. Exposure to H2O2 altered mRNA expression of 22 out of 84 key genes involved in dysregulation of placental development. In conclusion, short-term exposure of villous first trimester trophoblasts to low concentrations of H2O2 significantly alters miRNA profile and expression of genes implicated in placental development.
氧化应激与胎盘微小RNA(miRNA)变化之间的关系作为子痫前期(PE)潜在的发病机制尚未完全阐明。我们研究了氧化应激对妊娠早期绒毛3A滋养层细胞中与PE相关基因的miRNA和mRNA表达谱的影响,这些细胞暴露于12种不同浓度(0 - 1 mM)的过氧化氢(H2O2)中0.5、4、24和48小时。使用磺酰罗丹明B(SRB)测定法确定细胞毒性,以计算H2O2的半数抑制浓度(IC50)。在暴露于H2O2 4小时后提取RNA,用于miRNA和基因表达谱分析。H2O2对3A滋养层细胞具有浓度和时间依赖性的细胞毒性。3A细胞短期暴露于低浓度的H2O2(IC50的5%)显著改变了miRNA谱,595个可评估的miRNA中有195个发生了显著变化。微小RNA注释工具(TAM)分析表明,这些改变的miRNA分为43个簇和34个家族,确定了41种功能。暴露于H2O2改变了84个参与胎盘发育失调的关键基因中22个基因的mRNA表达。总之,妊娠早期绒毛滋养层细胞短期暴露于低浓度的H2O2会显著改变miRNA谱以及与胎盘发育相关基因的表达。