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首页> 外文期刊>The Journal of Physiology >Skeletal muscle afferent fibres release substance P in the nucleus tractus solitarii of anaesthetized cats.
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Skeletal muscle afferent fibres release substance P in the nucleus tractus solitarii of anaesthetized cats.

机译:骨骼肌传入纤维在麻醉猫的孤束核中释放P物质。

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摘要

1. The tachykinin substance P was recovered from the commissural subdivision of the nucleus tractus solitarii (cNTS) using in vivo microdialysis during activation of cardiorespiratory and skeletal muscle receptors in thirteen chloralose-anaesthetized cats. 2. Tetanic muscle contraction was evoked by stimulating L7-S1 ventral roots (n = 7). Electrically induced muscle contraction increased mean arterial pressure (MAP) by 55 +/- 10 mmHg and heart rate by 29 +/- 6 beats min-1. During contraction the dialysate concentration increased 154 % above resting control levels (from 0.217 +/- 0.009 to 0.546 +/- 0.023 fmol (100 microl)-1, control vs. contraction, P < 0.05). 3. Loss of cardiorespiratory input following disruption of the carotid sinus and vagus nerves significantly blunted, but did not abolish, the increase in substance P during muscle contraction (from 0.247 +/- 0.022 to 0.351 +/- 0.021 fmol (100 microl)-1, control vs. contraction, P < 0.05). Approximately 44 % of the substance P release during contraction was independent of cardiorespiratory input transmitted by carotid sinus and vagus nerves. 4. To determine the contribution of cardiorespiratory related neural input on substance P release, an intravascular balloon positioned in the thoracic aorta was inflated to increase arterial pressure (n = 6). Balloon inflation increased MAP by 50 +/- 5 mmHg and substance P increased from 0.251 +/- 0.025 to 0.343 +/- 0. 028 fmol (100 microl)-1 (control vs. balloon inflation, P < 0.05). This increase was completely abolished following interruption of vagal and carotid sinus nerves (from 0.301 +/- 0.012 to 0.311 +/- 0. 014 fmol (100 microl)-1, control vs. balloon inflation). This finding shows that neural input from cardiorespiratory receptors (primarily arterial baroreceptors) accounted for 37 % of the total substance P release during muscle contraction. 5. The findings from this study demonstrate that activation of skeletal muscle receptors and cardiorespiratory receptors (predominantly arterial baroreceptors) increases the extraneuronal concentration of substance P in the cNTS. Because substance P release was not completely abolished during muscle contraction following disruption of carotid sinus and vagus nerves it is proposed that: (1) afferent projections from contraction-sensitive skeletal muscle receptors may release substance P in the NTS; (2) neural input from muscle receptors activates substance P-containing neurones within the NTS; and (3) convergence of afferent input from skeletal muscle receptors and arterial baroreceptors onto substance P-containing neurones in the cNTS facilitates the release of substance P. The role of tachykininergic modulation of cardiorespiratory input is discussed.
机译:1.在激活十三只经氯醛糖麻醉的猫的心肺和骨骼肌受体的过程中,使用体内微量透析从速溶核分离区(cNTS)的连合细分中回收了速激肽物质P。 2.通过刺激L7-S1腹侧根(n = 7)引起强直性肌肉收缩。电诱导的肌肉收缩使平均动脉压(MAP)升高55 +/- 10 mmHg,心率提高29 +/- 6次min-1。在收缩期间,透析液浓度比静息对照水平高154%(从0.217 +/- 0.009到0.546 +/- 0.023 fmol(100微升)-1,对照vs.收缩,P <0.05)。 3.颈动脉窦和迷走神经破裂后心肺输入的损失明显减弱,但没有消失,肌肉收缩过程中P物质的增加(从0.247 +/- 0.022到0.351 +/- 0.021 fmol(100微升)- 1,对照与收缩,P <0.05)。收缩过程中释放的P物质中约有44%与颈动脉窦和迷走神经传递的心肺输入无关。 4.为了确定心肺相关神经输入对P物质释放的贡献,对位于胸主动脉中的血管内球囊进行充气以增加动脉压(n = 6)。球囊膨胀使MAP增加50 +/- 5 mmHg,物质P从0.251 +/- 0.025增加到0.343 +/- 0. 028 fmol(100微升)-1(对照vs.球囊膨胀,P <0.05)。迷走神经和颈动脉窦神经中断后,这种增加被完全消除(从0.301 +/- 0.012到0.311 +/- 0. 014 fmol(100微升)-1,对照组与球囊充盈)。这一发现表明,心肺呼吸受体(主要是动脉压力感受器)的神经输入占肌肉收缩过程中P释放总量的37%。 5.这项研究的结果表明,骨骼肌受体和心肺受体(主要是动脉压力感受器)的激活增加了cNTS中P物质的神经外浓度。由于颈动脉窦和迷走神经破裂后肌肉收缩过程中P物质的释放并未完全消除,因此提出:(1)收缩敏感的骨骼肌受体的传入突触可能在NTS中释放P物质; (2)来自肌肉受体的神经输入激活NTS内含P物质的神经元; (3)骨骼肌受体和动脉压力感受器的传入输入在cNTS中包含P物质的神经元上的汇聚促进P物质的释放。讨论了心动能对心肺输入的调节作用。

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