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Role of the dorsomedial hypothalamus in glucocorticoid-mediated feedback inhibition of the hypothalamic-pituitary-adrenal axis

机译:背侧下丘脑在糖皮质激素介导的下丘脑-垂体-肾上腺轴反馈抑制中的作用

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Previous studies suggest that multiple corticolimbic and hypothalamic structures are involved in glucocorticoid-mediated feedback inhibition of the hypothalamic-pituitary-adrenal (HPA) axis, including the dorsomedial hypothalamus (DMH), but a potential role of the DMH has not been directly tested. To investigate the role of the DMH in glucocorticoid-mediated negative feedback, adult male Sprague Dawley rats were implanted with jugular cannulae and bilateral guide cannulae directed at the DMH, and finally were either adrenalectomized (ADX) or were subjected to sham-ADX. ADX rats received corticosterone (CORT) replacement in the drinking water (25 mu g/mL), which, based on initial studies, restored a rhythm of plasma CORT concentrations in ADX rats that was similar in period and amplitude to the diurnal rhythm of plasma CORT concentrations in sham-ADX rats, but with a significant phase delay. Following recovery from surgery, rats received microinjections of either CORT (10 ng, 0.5 mu L, 0.25 mu L/min, per side) or vehicle (aCSF containing 0.2% EtOH), bilaterally, directly into the DMH, prior to a 40-min period of restraint stress. In sham-ADX rats, bilateral intra-DMH microinjections of CORT, relative to bilateral intra-DMH microinjections of vehicle, decreased restraint stress-induced elevation of endogenous plasma CORT concentrations 60 min after the onset of intra-DMH injections. Intra-DMH CORT decreased the overall area under the curve for plasma CORT concentrations during the intermediate time frame of glucocorticoid negative feedback, from 0.5 to 2 h following injection. These data are consistent with the hypothesis that the DMH is involved in feedback inhibition of HPA axis activity at the intermediate time frame.
机译:先前的研究表明,糖皮质激素介导的下丘脑-垂体-肾上腺(HPA)轴(包括下丘脑下丘脑(DMH))的糖皮质激素介导的反馈抑制涉及多个皮质下丘脑和下丘脑结构,但尚未直接测试DMH的潜在作用。为了研究DMH在糖皮质激素介导的负反馈中的作用,将成年雄性Sprague Dawley大鼠植入颈动脉插管和指向DMH的双侧引导插管,最后进行肾上腺切除术(ADX)或进行假sham-ADX。 ADX大鼠在饮用水(25μg / mL)中接受了皮质酮(CORT)替代,这根据初步研究恢复了ADX大鼠血浆CORT浓度的节律,其周期和振幅与血浆的昼夜节律相似假ADX大鼠的CORT浓度较高,但有明显的相位延迟。从手术中恢复后,大鼠接受双侧CORT(每侧10 ng,0.5μL,0.25μL/ min,每侧)或溶媒(含0.2%EtOH的aCSF)的显微注射,然后直接注射到DMH中,每次40-约束压力的最小持续时间。在sham-ADX大鼠中,相对于车辆的双边DMH显微注射,双侧DMH显微注射相对于媒介物的双边DMH显微注射,在DMH内注射开始后60分钟,降低了束缚应激诱导的内源血浆CORT浓度升高。在糖皮质激素负反馈的中间时间范围内(注射后0.5至2小时),DMH内CORT降低了血浆CORT浓度曲线下的总面积。这些数据与DMH在中间时间帧参与HPA轴活动的反馈抑制的假设相一致。

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