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A Study on Effect of Electroacupuncture on Gene Expression in Hypothalamus of Rats with Stress-Induced Prehypertension Based on Gene Chip Technology

机译:基于基因芯片技术的电针对应激性高血压患者下丘脑基因表达影响的研究

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Objective. To explore the effect of electroacupuncture (EA) on gene expression in the hypothalamus of rats with stress-induced prehypertension and try to reveal its biological mechanism with gene chip technology.Methods. The stress-induced hypertensive rat model was prepared by combining electric foot-shocks with generated noise. Molding cycle lasted for 14 days and EA intervention was applied on model + EA group during model preparation. Rat Gene 2.0 Array technology was used for the determination of gene expression profiles and the screened key genes were verified by real-time fluorescence quantitative PCR method.Results. Compared with the blank group, 234 genes were upregulated and 73 were downregulated in the model group. Compared with the model group, 110 genes were upregulated and 273 genes were downregulated in model + EA group. The PCR results of the key genes including HSPB1, P2RX4, PPP1R14A, and TH are consistent with that of gene chip test.Conclusion. EA could significantly lower blood pressure of stress-induced prehypertension rats and affect its gene expression profile in hypothalamus. Genes and their signal transduction pathway that related to the contraction of vascular smooth muscle, concentration of Ca2+, and excitability of sympathetic nerve may be involved in EA’s antihypertensive mechanism.
机译:目的。探讨电针(EA)对应激性高血压前期大鼠下丘脑基因表达的影响,并试图通过基因芯片技术揭示其生物学机制。压力诱发的高血压大鼠模型是通过将电脚电击与产生的噪声相结合而制备的。成型周期持续14天,在模型制备过程中对模型+ EA组进行了EA干预。使用Rat Gene 2.0 Array技术确定基因表达谱,并通过实时荧光定量PCR方法验证筛选出的关键基因。与空白组相比,模型组有234个基因上调,有73个基因下调。与模型组相比,模型+ EA组上调了110个基因,下调了273个基因。 HSPB1,P2RX4,PPP1R14A和TH等关键基因的PCR结果与基因芯片测试结果一致。 EA可以显着降低应激性高血压前期大鼠的血压,并影响其在下丘脑的基因表达谱。与血管平滑肌收缩,Ca2 +浓度和交感神经兴奋性有关的基因及其信号转导途径可能与EA的降压机制有关。

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