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Sympathoexcitation by hypothalamic paraventricular nucleus neurons projecting to the rostral ventrolateral medulla

机译:由呼吸腹腔外髓鞘突出的下丘脑椎间盘核心腺素的同情泌尿膜

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摘要

Key points Causal relationships between central cardiovascular pathways and sympathetic vasomotor tone have not been evidenced. This study aimed to verify the sympathoexcitatory role of hypothalamic paraventricular nucleus neurons that project to the rostral ventrolateral medulla (PVN‐RVLM neurons). By using optogenetic techniques, we demonstrated that stimulation of PVN‐RVLM glutamatergic neurons increased renal sympathetic nerve activity and arterial pressure via, at least in part, stimulation of RVLM C1 neurons in rats. This monosynaptic pathway may function in acute sympathetic adjustments to stressors and/or be a component of chronic sympathetic hyperactivity in pathological conditions such as heart failure. Abstract The rostral ventrolateral medulla (RVLM), which is known to play an important role in regulating sympathetic vasomotor tone, receives axonal projections from the hypothalamic paraventricular nucleus (PVN). However, no studies have proved that excitation of the PVN neurons that send axonal projections to the RVLM (PVN‐RVLM neurons) causes sympathoexcitation. This study aimed to directly examine the sympathoexcitatory role of PVN‐RVLM neurons. Male rats received microinjections into the PVN with an adeno‐associated virus (AAV) vector that encoded a hybrid of channelrhodopsin‐2/1 with the reporter tdTomato (ChIEF‐tdTomato), or into the RVLM with a retrograde AAV vector that encoded a channelrhodopsin with green fluorescent protein (ChR2‐GFP retro ). Under anaesthesia with urethane and α‐chloralose, photostimulation (473?nm wavelength) of PVN‐RVLM neurons, achieved by laser illumination of either RVLM of ChIEF‐tdTomato rats ( n ?= 8) or PVN of ChR2‐GFP retro rats ( n ?= 4), elicited significant renal sympathoexcitation. Immunofluorescence confocal microscopy showed that RVLM adrenergic C1 neurons of ChIEF‐tdTomato rats were closely associated with tdTomato‐labelled, PVN‐derived axons that contained vesicular glutamate transporter 2. In another subset of anaesthetized ChIEF‐tdTomato rats ( n ?= 6), the renal sympathoexcitation elicited by photostimulation of the PVN was suppressed by administering ionotropic glutamate receptor blockers into the RVLM. These results demonstrate that excitation of PVN‐RVLM glutamatergic neurons leads to sympathoexcitation via, at least in part, stimulation of RVLM C1 neurons.
机译:中央心血管途径和交感神经血管紧张之间的关键点的因果关系尚未证实。本研究旨在验证下丘脑室旁核神经元投射到延髓腹外侧(PVN-区神经元)的交感作用。通过使用光遗传学技术,我们证实PVN-RVLM谷氨酸能神经元的的刺激大鼠增加肾交感神经活动,并经由动脉压,至少部分,RVLM C1神经元的刺激。此单突触途径可能在急性交感神经调整起到压力源和/或作为在病理条件下,如心脏衰竭慢性交感神经功能亢进的组分。摘要延髓腹外侧(RVLM),其已知在调节交感神经血管舒缩张力发挥了重要的作用,接收来自下丘脑室旁核(PVN)轴突突起。然而,没有研究证明PVN神经元的轴突可投射到RVLM(PVN-区神经元)导致sympathoexcitation的是激励。这项研究的目的是直接检查PVN-区神经元的交感作用。雄性大鼠接受显微注射入PVN与编码通道蛋白2/1的混合与记者tdTomato(首席-tdTomato),或与该编码的通道视紫红逆行AAV载体的RVLM腺相关病毒(AAV)载体绿色荧光蛋白(ChR2的GFP复古)。在麻醉下用PVN-RVLM神经元的氨基甲酸乙酯和α氯醛糖,光刺激(473?的波长),由首席-tdTomato大鼠的任RVLM的激光照射(N = 8)或的ChR2-GFP复古大鼠PVN(N达到?= 4),引起肾显著sympathoexcitation。免疫荧光共聚焦显微镜显示,首席-tdTomato大鼠肾上腺素能RVLM C1神经元紧密地与含有囊泡谷氨酸转运2.在麻醉首席-tdTomato大鼠的另一子集tdTomato标记,PVN衍生的轴突(N = 6)相关联,所述由PVN的光刺激诱发肾sympathoexcitation通过施用离子型谷氨酸受体阻断剂进入RVLM抑制。这些结果证明PVN-RVLM谷氨酸能神经元导致sympathoexcitation通过,至少部分,RVLM C1神经元的刺激的该激励。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第19期|共15页
  • 作者单位

    Division of Integrative PhysiologyTottori University Faculty of Medicine86 Nishi‐cho Yonago Tottori;

    Division of Integrative PhysiologyTottori University Faculty of Medicine86 Nishi‐cho Yonago Tottori;

    Division of Integrative PhysiologyTottori University Faculty of Medicine86 Nishi‐cho Yonago Tottori;

    Department of Integrative PhysiologyNagoya University Graduate School of Medicine65 Tsurumai‐cho;

    Department of Integrative PhysiologyNagoya University Graduate School of Medicine65 Tsurumai‐cho;

    Division of Integrative PhysiologyTottori University Faculty of Medicine86 Nishi‐cho Yonago Tottori;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    optogenetics; sympathetic nerve activity; rostral ventrolateral medulla;

    机译:Optogenetics;交感神经活动;rostral pentrolateral medulla;

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