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Acupoint specificity on acupuncture regulation of hypothalamic- pituitary-adrenal cortex axis function

机译:针刺调节下丘脑-垂体-肾上腺皮质轴功能的穴位特异性

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Background The hypothalamus is an essential part of the brain that responds to a variety of signaling including stressful stimulations and acupuncture signals. It is also the key element of the hypothalamic-pituitary-adrenal cortex axis(HPAA). The effect of acupuncture is transmitted into the brain from the distance sensory receptor around the acupoints via peripheral nerves and body fluid. In vivo recording the activities of stress reaction neurons (SRNs, CRH-like neurons) in hypothalamic paraventricular nucleus (PVN) in response to the stimulations from different acupoints could therefore objectively reflect the acupuncture afferent effect. Methods In this study, the electrophysiological method was adopted to record synchronously the activities of 43 CRH-like neurons after acupuncture stimulations at 33 acupoints located at the different regions. The acupoints that specifically activate certain CRH-like neurons (specificity acupoints) were selected. Furthermore, we investigated in a rat model of unpredictable chronic mild stress (UCMS) whether these specificity acupoints regulate HPAA function. The endpoints of measurement include corticosterone (CORT) level in peripheral blood, the expressions of corticotrophin releasing hormone (CRH) and glucocorticoid receptor (GR) protein in PVN and the animal behavioral performance. Results Our results reveal that Shenshu (BL23), Ganshu (BL18), Qimen (LR14), Jingmen (GB25), Riyue (GB24), Zangmen (LR13), Dazui (DU14) and auricular concha region (ACR) are the specificity acupoints; and Gallbladder, Liver and Du Channels were the specificity Channels. The acupoints on Gallbladder Channel and the acupoints innervated by the same spinal cord segments as the adrenal gland demonstrated dramatic effects. Conclusions This study provides a new platform to further explore acupoints specificity in the regulation of HPAA activities.
机译:背景下丘脑是大脑的重要组成部分,可对多种信号作出反应,包括压力刺激和针灸信号。它也是下丘脑-垂体-肾上腺皮质轴(HPAA)的关键元素。针灸的作用是通过周围神经和体液从穴位附近的距离感觉受体传递到大脑的。因此,体内记录下丘脑室旁核(PVN)中应激反应神经元(SRNs,CRH样神经元)的活动以响应来自不同穴位的刺激可以客观地反映针灸的传入效应。方法采用电生理方法同步记录43个CRH样神经元在不同部位的33个穴位刺激后的活动。选择特异性激活某些CRH样神经元的穴位(特异性穴位)。此外,我们在不可预测的慢性轻度应激(UCMS)的大鼠模型中研究了这些特异性穴位是否调节HPAA功能。测量的终点包括外周血中的皮质酮(CORT)水平,PVN中促肾上腺皮质激素释放激素(CRH)和糖皮质激素受体(GR)蛋白的表达以及动物的行为表现。结果我们的结果显示,神舒(BL23),甘肃(BL18),祁门(LR14),荆门(GB25),日月(GB24),藏门(LR13),大嘴(DU14)和耳廓区域(ACR)是特异性穴位;而胆囊,肝和杜通道是特异性通道。胆囊通道上的穴位和与肾上腺相同的脊髓节段支配的穴位表现出显着的作用。结论这项研究提供了一个新的平台,可以进一步探讨穴位在HPAA活动调节中的特异性。

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