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大鼠一个化学感受器部位具有神经激肽-1受体的神经元的P物质-皂草素损伤会降低通气和化学敏感性。

Substance P-saporin lesion of neurons with NK1 receptors in one chemoreceptor site in rats decreases ventilation and chemosensitivity.

作者信息

Nattie Eugene E, Li Aihua

机构信息

Department of Physiology, Dartmouth Medical School, Borwell Building, Lebanon, NH 03756-0001, USA.

出版信息

J Physiol. 2002 Oct 15;544(2):603-16. doi: 10.1113/jphysiol.2002.020032.

Abstract

All medullary central chemoreceptor sites contain neurokinin-1 receptor immunoreactivity (NK1R-ir). We ask if NK1R-ir neurons and processes are involved in chemoreception. At one site, the retrotrapezoid nucleus/parapyramidal region (RTN/Ppy), we injected a substance P-saporin conjugate (SP-SAP; 0.1 pmol in 100 nl) to kill NK1R-ir neurons specifically, or SAP alone as a control. We made measurements for 15 days after the injections in two groups of rats. In group 1, with unilateral injections made in the awake state via a pre-implanted guide cannula, we compared responses within rats using initial baseline data. In group 2, with bilateral injections made under anaesthesia at surgery, we compared responses between SP-SAP- and SAP-treated rats. SP-SAP treatment reduced the volume of the RTN/Ppy region that contained NK1R-ir neuronal somata and processes by 44 % (group 1) and by 47 and 40 % on each side, respectively (group 2). Ventilation (.V(E)) and tidal volume (V(T)) were decreased during air breathing in sleep and wakefulness (group 2; P < 0.001; two-way ANOVA) and P(a,CO2) was increased (group 2; P < 0.05; Student's t test). When rats breathed an air mixture containing 7 % CO(2) during sleep and wakefulness, .V(E) and V(T) were lower (groups 1 and 2; P < 0.001; ANOVA) and the Delta.V(E) in air containing 7 % CO(2) compared to air was decreased by 28-30 % (group 1) and 17-22 % (group 2). SP-SAP-treated rats also slept less during air breathing. We conclude that neurons with NK1R-ir somata or processes in the RTN/Ppy region are either chemosensitive or they modulate chemosensitivity. They also provide a tonic drive to breathe and may affect arousal.

摘要

所有延髓中枢化学感受器部位均含有神经激肽-1受体免疫反应性(NK1R-ir)。我们探究NK1R-ir神经元及其突起是否参与化学感受。在一个部位,即延髓后梯形核/锥体旁区域(RTN/Ppy),我们注射了P物质-皂草素偶联物(SP-SAP;100 nl中含0.1 pmol)以特异性杀死NK1R-ir神经元,或仅注射皂草素(SAP)作为对照。注射后,我们对两组大鼠进行了15天的测量。在第1组中,通过预先植入的引导套管在清醒状态下进行单侧注射,我们利用初始基线数据比较大鼠体内的反应。在第2组中,在手术麻醉下进行双侧注射,我们比较了经SP-SAP处理和经SAP处理的大鼠之间的反应。SP-SAP处理使RTN/Ppy区域中含有NK1R-ir神经元胞体及其突起的体积分别减少了44%(第1组),以及两侧分别减少了47%和40%(第2组)。在睡眠和清醒时的空气呼吸过程中,通气量(.V(E))和潮气量(V(T))均降低(第2组;P<0.001;双向方差分析),而动脉血二氧化碳分压(P(a,CO2))升高(第2组;P<0.05;学生t检验)。当大鼠在睡眠和清醒时呼吸含7%二氧化碳的空气混合物时,.V(E)和V(T)更低(第1组和第2组;P<0.001;方差分析),与空气相比,含7%二氧化碳的空气中的Delta.V(E)降低了28 - 30%(第1组)和17 - 22%(第2组)。经SP-SAP处理的大鼠在空气呼吸时睡眠也更少。我们得出结论,RTN/Ppy区域中具有NK1R-ir胞体或突起的神经元要么是化学敏感的,要么它们调节化学敏感性。它们还提供维持呼吸的紧张性驱动,并可能影响觉醒。

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