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阻断下丘脑背内侧核和穹窿周区会抑制对唤醒和应激刺激的呼吸反应。

Blockade of the dorsomedial hypothalamus and the perifornical area inhibits respiratory responses to arousing and stressful stimuli.

作者信息

Bondarenko Evgeny, Beig Mirza I, Hodgson Deborah M, Braga Valdir A, Nalivaiko Eugene

机构信息

School of Biomedical Sciences and Pharmacy, and

School of Biomedical Sciences and Pharmacy, and.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2015 May 15;308(10):R816-22. doi: 10.1152/ajpregu.00415.2014. Epub 2015 Mar 11.

DOI:10.1152/ajpregu.00415.2014
PMID:25761699
Abstract

The dorsomedial hypothalamus (DMH) and the perifornical area (DMH/PeF) is one of the key regions of central autonomic processing. Previous studies have established that this region contains neurons that may be involved in respiratory processing; however, this has never been tested in conscious animals. The aim of our study was to investigate the involvement of the DMH/PeF area in mediating respiratory responses to stressors of various intensities and duration. Adult male Wistar rats (n = 8) received microinjections of GABAA agonist muscimol or saline into the DMH/PeF bilaterally and were subjected to a respiratory recording using whole body plethysmography. Presentation of acoustic stimuli (500-ms white noise) evoked transient responses in respiratory rate, proportional to the stimulus intensity, ranging from +44 ± 27 to +329 ± 31 cycles/min (cpm). Blockade of the DMH/PeF almost completely abolished respiratory rate and tidal volume responses to the 40- to 70-dB stimuli and also significantly attenuated responses to the 80- to 90-dB stimuli. Also, it significantly attenuated respiratory rate during the acclimatization period (novel environment stress). The light stimulus (30-s 2,000 lux) as well as 15-min restraint stress significantly elevated respiratory rate from 95 ± 4.0 to 236 ± 29 cpm and from 117 ± 5.2 to 189 ± 13 cpm, respectively; this response was abolished after the DMH/PeF blockade. We conclude that integrity of the DMH/PeF area is essential for generation of respiratory responses to both stressful and alerting stimuli.

摘要

下丘脑背内侧核(DMH)和穹窿周区(DMH/PeF)是中枢自主神经处理的关键区域之一。先前的研究表明,该区域包含可能参与呼吸处理的神经元;然而,这从未在清醒动物中得到验证。我们研究的目的是调查DMH/PeF区域在介导对不同强度和持续时间应激源的呼吸反应中的作用。成年雄性Wistar大鼠(n = 8)双侧DMH/PeF接受微量注射GABAA激动剂蝇蕈醇或生理盐水,并使用全身体积描记法进行呼吸记录。呈现听觉刺激(500毫秒白噪声)会引起呼吸频率的短暂反应,与刺激强度成比例,范围从+44±27至+329±31次/分钟(cpm)。阻断DMH/PeF几乎完全消除了对40至70分贝刺激的呼吸频率和潮气量反应,也显著减弱了对80至90分贝刺激的反应。此外,它还显著减弱了适应期(新环境应激)的呼吸频率。光刺激(30秒2000勒克斯)以及15分钟的束缚应激分别使呼吸频率从95±4.0显著升高至236±29 cpm和从117±5.2显著升高至189±13 cpm;DMH/PeF阻断后该反应消失。我们得出结论,DMH/PeF区域的完整性对于产生对应激和警觉刺激的呼吸反应至关重要。

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