首页> 美国卫生研究院文献>Scientific Reports >Genomewide Analysis of Rat Periaqueductal Gray-Dorsal Horn Reveals Time- Region- and Frequency-Specific mRNA Expression Changes in Response to Electroacupuncture Stimulation
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Genomewide Analysis of Rat Periaqueductal Gray-Dorsal Horn Reveals Time- Region- and Frequency-Specific mRNA Expression Changes in Response to Electroacupuncture Stimulation

机译:全基因组分析的大鼠胸膜导水管灰背角揭示了电针刺激响应的时间区域和特定频率的mRNA表达变化。

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摘要

Electroacupuncture (EA) has been widely applied for illness prevention, treatment or rehabilitation in the clinic, especially for pain management. However, the molecular events that induce these changes remain largely uncharacterized. The periaqueductal gray (PAG) and the spinal dorsal horn (DH) have been verified as two critical regions in the response to EA stimulation in EA analgesia. In this study, a genetic screen was conducted to delineate the gene expression profile in the PAG-DH regions of rats to explore the molecular events of the analgesic effect induced by low-frequency (2-Hz) and high-frequency (100-Hz) EAs. Microarray analysis at two different time points after EA stimulation revealed time-, region- and frequency-specific gene expression changes. These expression differences suggested that modulation of neural-immune interaction in the central nervous system played an important role during EA analgesia. Furthermore, low-frequency EA could regulate gene expression to a greater degree than high-frequency EA. Altogether, the present study offers, for the first time, a characterized transcriptional response pattern in the PAG-DH regions followed by EA stimulation and, thus, provides a solid experimental framework for future in-depth analysis of the mechanisms underlying EA-induced effects.
机译:电针(EA)已广泛应用于临床中的疾病预防,治疗或康复,尤其是疼痛管理。然而,引起这些变化的分子事件仍然很大程度上未被表征。导水管周围的灰色(PAG)和脊髓背角(DH)已被证实是EA镇痛中对EA刺激产生反应的两个关键区域。在这项研究中,进行了遗传筛选以描绘大鼠PAG-DH区中的基因表达谱,以探讨低频(2-Hz)和高频(100-Hz)诱导的止痛作用的分子事件。 )EA。 EA刺激后两个不同时间点的微阵列分析揭示了时间,区域和频率特异性基因表达的变化。这些表达差异表明,中枢神经系统中神经-免疫相互作用的调节在EA镇痛期间起重要作用。此外,与高频EA相比,低频EA可以更广泛地调节基因表达。总之,本研究首次在PAG-DH区提供了特征化的转录反应模式,随后进行了EA刺激,因此,为将来深入分析EA诱导的作用机理提供了坚实的实验框架。 。

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