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Experimental preeclampsia in rats affects vascular gene expression patterns

机译:大鼠实验性子痫前期影响血管基因表达模式

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摘要

Normal pregnancy requires adaptations of the maternal vasculature. During preeclampsia these adaptations are not well established, which may be related to maternal hypertension and proteinuria. The effects of preeclampsia on the maternal vasculature are not yet fully understood. We aimed to evaluate gene expression in aortas of pregnant rats with experimental preeclampsia using a genome wide microarray. Aortas were isolated from pregnant Wistar outbred rats with low-dose LPS-induced preeclampsia (ExpPE), healthy pregnant (Pr), non-pregnant and low-dose LPS-infused non-pregnant rats. Gene expression was measured by microarray and validated by real-time quantitative PCR. Gene Set Enrichment Analysis was performed to compare the groups. Functional analysis of the aorta was done by isotonic contraction measurements while stimulating aortic rings with potassium chloride. 526 genes were differentially expressed, and positive enrichment of “potassium channels”, “striated muscle contraction”, and “neuronal system” gene sets were found in ExpPE vs. Pr. The potassium chloride-induced contractile response of ExpPE aortic rings was significantly decreased compared to this response in Pr animals. Our data suggest that potassium channels, neuronal system and (striated) muscle contraction in the aorta may play a role in the pathophysiology of experimental preeclampsia. Whether these changes are also present in preeclamptic women needs further investigation.
机译:正常妊娠需要适应母亲的脉管系统。在先兆子痫期间,这些适应性尚未完全确立,这可能与母体高血压和蛋白尿有关。子痫前期对孕妇脉管系统的影响尚未完全了解。我们旨在使用全基因组微阵列评估先兆子痫的妊娠大鼠主动脉中的基因表达。从具有低剂量LPS​​诱发的先兆子痫(ExpPE),健康怀孕(Pr),未妊娠和低剂量的LPS注入的非妊娠大鼠的怀孕Wistar近交大鼠中分离主动脉。通过微阵列测量基因表达,并通过实时定量PCR验证。进行基因组富集分析以比较各组。通过等渗收缩测量对主动脉进行功能分析,同时用氯化钾刺激主动脉环。 526个基因差异表达,并且在ExpPE vs. Pr。中发现了“钾通道”,“横纹肌收缩”和“神经系统”基因组的正向富集。与Pr动物相比,ExpPE主动脉环的氯化钾诱导的收缩反应显着降低。我们的数据表明主动脉钾离子通道,神经元系统和(横纹)肌肉收缩可能在先兆子痫的病理生理中起作用。这些变化是否也存在于先兆子痫女性中,需要进一步调查。

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