首页> 外文OA文献 >INTERMITTENT ACTIVATION OF PERIPHERAL CHEMORECEPTORS IN AWAKE RATS INDUCES Fos EXPRESSION IN ROSTRAL VENTROLATERAL MEDULLA-PROJECTING NEURONS IN THE PARAVENTRICULAR NUCLEUS OF THE HYPOTHALAMUS
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INTERMITTENT ACTIVATION OF PERIPHERAL CHEMORECEPTORS IN AWAKE RATS INDUCES Fos EXPRESSION IN ROSTRAL VENTROLATERAL MEDULLA-PROJECTING NEURONS IN THE PARAVENTRICULAR NUCLEUS OF THE HYPOTHALAMUS

机译:醒觉大鼠中外周化学受体的间歇性激活诱导丘脑上丘脑室旁核中轮状腹侧延髓质神经元的Fos表达

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摘要

Despite the well-established sympathoexcitation evoked by chemoreflex activation, the specific sub-regions of the CNS underlying such sympathetic responses remain to be fully characterized. In the present study we examined the effects of intermittent chemoreflex activation in awake rats on Fos-immunoreactivity (Fos-ir) in various subnuclei of the paraventricular nucleus of the hypothalamus (PVN), as well as in identified neurosecretory preautonomic PVN neurons. In response to intermittent chemoreflex activation, a significant increase in the number of Fos-ir cells was found in autonomic-related PVN subnuclei, including the posterior parvocellular, ventromedial parvocellular and dorsal-cap, but not in the neurosecretory magnocellular-containing lateral magnocellular subnucleus. No changes in Fos-ir following chemoreflex activation were observed in the anterior PVN subnucleus. Experiments combining Fos immunohistochemistry and neuronal tract tracing techniques showed a significant increase in Fos-ir in rostral ventrolateral medulla (RVLM)-projecting (PVN-RVLM), but not in nucleus of solitarii tract (NTS)-projecting PVN neurons. In summary, our results support the involvement of the PVN in the central neuronal circuitry activated in response to chemoreflex activation, and indicate that PVN-RVLM neurons constitute a neuronal substrate contributing to the sympathoexcitatory component of the chemoreflex. Published by Elsevier Ltd on behalf of IBRO.
机译:尽管化学反射激活引起了公认的交感神经兴奋,但CNS特定于此类交感神经反应的特定子区域仍有待充分表征。在本研究中,我们检查了清醒大鼠中间歇性化学反射激活对下丘脑室旁核(PVN)各个亚核中Fos免疫反应(Fos-ir)以及已确定的神经分泌前自主神经PVN神经元的影响。对间歇性化学反射激活的响应,在自主神经相关的PVN亚核中(包括后小细胞,腹膜小细胞和背盖)发现了Fos-ir细胞的数量显着增加,但在含有神经分泌分泌的含有小细胞的外侧小细胞亚核中却没有。化学前反射激活后,在PVN前核中未观察到Fos-ir的变化。结合Fos免疫组织化学和神经元追踪技术的实验显示,在延髓腹侧延髓(RVLM)投射(PVN-RVLM)中,但在孤单核(NTS)投射PVN神经元核中,Fos-ir明显增加。总之,我们的结果支持PVN参与响应化学反射激活而激活的中枢神经元回路,并表明PVN-RVLM神经元构成了神经化学反射的兴奋性交感神经成分。由Elsevier Ltd代表IBRO发布。

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