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食欲素-A通过激活后脑儿茶酚胺能神经元增强雄性大鼠的进食。

Orexin-A enhances feeding in male rats by activating hindbrain catecholamine neurons.

作者信息

Li Ai-Jun, Wang Qing, Davis Hana, Wang Rong, Ritter Sue

机构信息

Programs in Neuroscience, Washington State University, Pullman, Washington

Programs in Neuroscience, Washington State University, Pullman, Washington.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2015 Aug 15;309(4):R358-67. doi: 10.1152/ajpregu.00065.2015. Epub 2015 Jun 10.

Abstract

Both lateral hypothalamic orexinergic neurons and hindbrain catecholaminergic neurons contribute to control of feeding behavior. Orexin fibers and terminals are present in close proximity to hindbrain catecholaminergic neurons, and fourth ventricular (4V) orexin injections that increase food intake also increase c-Fos expression in hindbrain catecholamine neurons, suggesting that orexin neurons may stimulate feeding by activating catecholamine neurons. Here we examine that hypothesis in more detail. We found that 4V injection of orexin-A (0.5 nmol/rat) produced widespread activation of c-Fos in hindbrain catecholamine cell groups. In the A1 and C1 cell groups in the ventrolateral medulla, where most c-Fos-positive neurons were also dopamine β hydroxylase (DBH) positive, direct injections of a lower dose (67 pmol/200 nl) of orexin-A also increased food intake in intact rats. Then, with the use of the retrogradely transported immunotoxin, anti-DBH conjugated to saporin (DSAP), which targets and destroys DBH-expressing catecholamine neurons, we examined the hypothesis that catecholamine neurons are required for orexin-induced feeding. Rats given paraventricular hypothalamic injections of DSAP, or unconjugated saporin (SAP) as control, were implanted with 4V or lateral ventricular (LV) cannulas and tested for feeding in response to ventricular injection of orexin-A (0.5 nmol/rat). Both LV and 4V orexin-A stimulated feeding in SAP controls, but DSAP abolished these responses. These results reveal for the first time that catecholamine neurons are required for feeding induced by injection of orexin-A into either LV or 4V.

摘要

下丘脑外侧的食欲素能神经元和后脑的儿茶酚胺能神经元都参与对摄食行为的控制。食欲素纤维和终末与后脑儿茶酚胺能神经元紧密相邻,向第四脑室(4V)注射食欲素可增加食物摄入量,同时也会增加后脑儿茶酚胺神经元中c-Fos的表达,这表明食欲素神经元可能通过激活儿茶酚胺能神经元来刺激摄食。在此,我们更详细地研究这一假说。我们发现,向4V注射食欲素A(0.5 nmol/大鼠)可使后脑儿茶酚胺细胞群广泛激活c-Fos。在延髓腹外侧的A1和C1细胞群中,大多数c-Fos阳性神经元也是多巴胺β羟化酶(DBH)阳性,向此处直接注射较低剂量(67 pmol/200 nl)的食欲素A也可增加正常大鼠的食物摄入量。然后,我们使用逆行转运免疫毒素——与皂草素偶联的抗DBH(DSAP),它靶向并破坏表达DBH的儿茶酚胺能神经元,来检验儿茶酚胺能神经元是食欲素诱导摄食所必需的这一假说。给大鼠下丘脑室旁注射DSAP或作为对照的未偶联皂草素(SAP),然后植入4V或侧脑室(LV)套管,并检测其对脑室注射食欲素A(0.5 nmol/大鼠)的摄食反应。LV和4V注射食欲素A均可刺激SAP对照组的摄食,但DSAP消除了这些反应。这些结果首次揭示,向LV或4V注射食欲素A诱导的摄食需要儿茶酚胺能神经元参与。

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