首页> 美国卫生研究院文献>The Journal of Physiology >Opioid modulation of the response of preoptic neurones to stimulation of the ventral noradrenergic tract in female rats.
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Opioid modulation of the response of preoptic neurones to stimulation of the ventral noradrenergic tract in female rats.

机译:阿片样物质对雌性大鼠视前神经元对腹侧去甲肾上腺素能束刺激的反应的调节。

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摘要

1. Experiments were undertaken on twenty-nine ovariectomized female rats, pretreated with oestrogen and anaesthetized with urethane, to test the hypothesis that opioid peptides regulate noradrenergic transmission in the medial preoptic area and thereby influence the neural circuitry controlling the secretion of luteinizing hormone. 2. Extracellular recordings were obtained with glass micropipettes from ninety-four neurones in the medial preoptic area. These recordings were continued whilst both the ventral noradrenergic tract, the noradrenergic projection to the medial preoptic area, and orthodromic pathways originating in the arcuate nucleus, the main source for endogenous opioid peptides in the hypothalamus, were stimulated electrically. Forty of the ninety-four neurones responded to stimulation at one or both of the test sites. 3. Electrical stimulation of the ventral noradrenergic tract excited fifteen neurones (greater than 30% change in number of action potentials recorded during the 'response time period') and inhibited a further ten cells. When the nucleus arcuatus was stimulated electrically thirteen cells were inhibited and twelve neurones showed an excitatory response. 4. The opioid antagonist naloxone (80 mM) and/or morphine (50 mM) were ejected into the immediate vicinity of eighty-six of the recorded cells by passage of balanced currents (range 15-80 nA) through a multi-barrelled electrode glued to the recording electrode. The tip of the drug-containing electrode was about 15-25 microns behind the tip of the recording electrode. 5. The ionophoretic application of naloxone, during electrical stimulation of the ventral noradrenergic tract, diminished the inhibitory response in four of ten cells and enhanced the excitatory response in nine out of fifteen neurones. By contrast, morphine diminished the excitatory response in seven of these fifteen cells tested, an effect that was prevented by the simultaneous application of naloxone. 6. Similarly, the application of naloxone during stimulation of the nucleus arcuatus reduced the inhibitory effect in eight out of thirteen cells. When four of these eight responsive neurones were exposed to morphine either the effect of naloxone was reversed or, when given alone, the inhibition was enhanced. 7. Finally, for seventeen cells categorized as non-responsive to stimulation at either site, the application of naloxone during hind brain stimulation revealed an excitatory input from the ventral noradrenergic tract in seven cases. 8 The experiments demonstrate that opioid peptides modulate the neural inputs to the medial preoptic area arising from the nucleus arcuatus and the ventral noradrenergic tract.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.对29只经卵巢切除的雌性大鼠进行了实验,这些雌性大鼠用雌激素预处理并用氨基甲酸乙酯麻醉,以验证阿片类肽调节视前内侧区域去甲肾上腺素能传递从而影响控制黄体生成激素分泌的神经回路的假说。 2.用玻璃微量移液管从视前内侧区域的九十四个神经元中获得细胞外记录。这些记录继续进行,同时用电刺激了腹部的去甲肾上腺素能束,去甲肾上腺素能投射到内侧视前区,以及起源于弓形核(下丘脑内源性阿片肽的主要来源)的正畸通路。九十四个神经元中有四十四个对一个或两个测试部位的刺激作出了反应。 3.电刺激腹侧去甲肾上腺素能带激活15个神经元(在“响应时间”期间记录的动作电位数变化大于30%)并抑制了另外10个细胞。当电刺激弓形核时,抑制了十三个细胞,十二个神经元显示出兴奋性反应。 4.通过使平衡电流(范围为15-80 nA)通过多管电极,将阿片拮抗剂纳洛酮(80 mM)和/或吗啡(50 mM)喷射到八十六个记录细胞的附近。粘在记录电极上含药物的电极的尖端在记录电极的尖端之后约15-25微米。 5.在电刺激腹侧去甲肾上腺素能束过程中,纳洛酮的离子导入法可减少十个细胞中四个细胞的抑制反应,并增强十五个神经元中九个神经元的兴奋性反应。相比之下,吗啡减少了所测试的这15个细胞中的7个细胞中的兴奋反应,而同时应用纳洛酮可阻止这种作用。 6.同样,在刺激弧形核期间使用纳洛酮可降低13个细胞中8个的抑制作用。当这八个反应性神经元中有四个暴露于吗啡时,纳洛酮的作用会逆转,或者单独使用时,抑制作用会增强。 7.最后,对于在任一部位被分类为对刺激均无反应的17个细胞,在后脑刺激过程中纳洛酮的应用揭示了7个病例中腹侧去甲肾上腺素能束的兴奋性输入。 8实验表明,阿片样物质肽可调节由视神经核和腹侧去甲肾上腺素能束产生的对视前内侧区域的神经输入。(摘要截短为400字)

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