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中枢给予可卡因-苯丙胺调节转录肽可激活大鼠下丘脑神经内分泌神经元。

Central administration of cocaine-amphetamine-regulated transcript activates hypothalamic neuroendocrine neurons in the rat.

作者信息

Vrang N, Larsen P J, Kristensen P, Tang-Christensen M

机构信息

Department of Medical Anatomy, University of Copenhagen, Denmark.

出版信息

Endocrinology. 2000 Feb;141(2):794-801. doi: 10.1210/endo.141.2.7295.

Abstract

We have recently shown that intracerebroventricular (i.c.v.) administration of the hypothalamic neuropeptide cocaine-amphetamine-regulated transcript (CART) inhibits food intake and induces the expression of c-fos in several nuclei involved in the regulation of food intake. A high number of CART-induced c-Fos-positive nuclei in the paraventricular nucleus of the hypothalamus prompted us to examine the effect of i.c.v. recombinant CART-(42-89) on activation of CRH-, oxytocin-, and vasopressin-synthesizing neuroendocrine cells in the paraventricular nucleus (PVN). In addition, plasma levels of glucose were examined after central administration of CART-(42-89). Seventy-six male Wistar rats were fitted with i.c.v. cannulas and singly housed under 12-h light, 12-h dark conditions. One week postsurgery the animals were injected i.c.v. in the morning with 0.5 microg recombinant CART-(42-89) or saline. Trunk blood was collected by decapitation at 0 (baseline), 10, 20, 40, 60, 120, or 240 min. CART caused a strong increase in circulating corticosterone that was significantly different from saline at 20, 40, 60, and 120 min postinjection (P<0.05). Furthermore, CART caused a transient rise in plasma oxytocin levels (P<0.05 at 10 and 20 min postinjection), whereas plasma vasopressin levels were unaffected by i.c.v. CART. Animals injected i.c.v. with CART showed a rise in blood glucose levels 10 min postinjection (P<0.05). To examine whether the stimulatory effect of i.c.v. CART on corticosterone and oxytocin secretion is caused by activation of paraventricular nucleus/supraoptic nucleus (PVN/SON) neuroendocrine neurons, we used c-Fos as a marker of neuronal activity. Animals injected with CART showed a strong increase in c-Fos-immunoreactive nuclei in the PVN. Double immunohistochemistry revealed that a high (89+/-0.4%) number of CRH-immunoreactive neurons in the PVN contained c-Fos after CART i.c.v.. c-Fos expression was also observed in oxytocinergic cells (in both magnocellular and parvicellular PVN neurons as well as in the supraoptic nuclei) 120 min after CART administration, whereas none of the vasopressinergic neurons contained c-Fos. Triple immunofluorescence microscopy revealed that CART-immunoreactive fibers closely apposed c-Fos-positive CRH neurons, suggestive of a direct action of CART on PVN CRH neurons. In summary, i.c.v. CART activates central CRH neurons as well as both magnocellular (presumably neurohypophysial) and parvicellular (presumably descending) oxytocinergic neurons of the PVN. The effect of CART on CRH neurons most likely leads to corticosterone secretion from the adrenal gland, which may contribute to the inhibitory effects of CART on feeding behavior.

摘要

我们最近发现,经脑室内(i.c.v.)注射下丘脑神经肽可卡因 - 安非他明调节转录物(CART)可抑制食物摄入,并诱导参与食物摄入调节的多个核团中c - fos的表达。下丘脑室旁核中大量由CART诱导的c - Fos阳性核团促使我们研究i.c.v.重组CART - (42 - 89)对室旁核(PVN)中促肾上腺皮质激素释放激素(CRH)、催产素和血管加压素合成神经内分泌细胞激活的影响。此外,在中枢给予CART - (42 - 89)后检测血浆葡萄糖水平。76只雄性Wistar大鼠植入i.c.v.套管,并在12小时光照、12小时黑暗条件下单独饲养。术后一周,动物在早晨经i.c.v.注射0.5微克重组CART - (42 - 89)或生理盐水。在0(基线)、10、20、40、60、120或240分钟时通过断头采集躯干血。CART导致循环皮质酮显著增加,在注射后20、40、60和120分钟时与生理盐水组有显著差异(P<0.05)。此外,CART导致血浆催产素水平短暂升高(注射后10和20分钟时P<0.05),而血浆血管加压素水平不受i.c.v. CART的影响。经i.c.v.注射CART的动物在注射后10分钟血糖水平升高(P<0.05)。为了研究i.c.v. CART对皮质酮和催产素分泌的刺激作用是否由室旁核/视上核(PVN/SON)神经内分泌神经元的激活引起,我们使用c - Fos作为神经元活动标记物。注射CART的动物PVN中c - Fos免疫反应性核团显著增加。双重免疫组织化学显示,i.c.v.给予CART后,PVN中大量(89±0.4%)CRH免疫反应性神经元含有c - Fos。在给予CART 120分钟后,在催产素能细胞(包括大细胞和小细胞PVN神经元以及视上核)中也观察到c - Fos表达,而血管加压素能神经元中均未检测到c - Fos。三重免疫荧光显微镜显示,CART免疫反应性纤维紧密靠近c - Fos阳性CRH神经元,提示CART对PVN CRH神经元有直接作用。总之,i.c.v. CART激活中枢CRH神经元以及PVN的大细胞(可能是神经垂体的)和小细胞(可能是下行的)催产素能神经元。CART对CRH神经元的作用很可能导致肾上腺分泌皮质酮,这可能有助于CART对摄食行为的抑制作用。

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