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通过破坏前包钦格复合体和包钦格复合体内的突触抑制来扰动呼吸节律和模式。

Perturbations of Respiratory Rhythm and Pattern by Disrupting Synaptic Inhibition within Pre-Bötzinger and Bötzinger Complexes.

作者信息

Marchenko Vitaliy, Koizumi Hidehiko, Mosher Bryan, Koshiya Naohiro, Tariq Mohammad F, Bezdudnaya Tatiana G, Zhang Ruli, Molkov Yaroslav I, Rybak Ilya A, Smith Jeffrey C

机构信息

Department of Neurobiology and Anatomy, Drexel University College of Medicine , Philadelphia, Pennsylvania 19129.

Cellular and Systems Neurobiology Section, National Institute of Neurological Disorders and Stroke, National Institutes of Health , Bethesda, Maryland 20892.

出版信息

eNeuro. 2016 May 13;3(2). doi: 10.1523/ENEURO.0011-16.2016. eCollection 2016 Mar-Apr.

Abstract

The pre-Bötzinger (pre-BötC) and Bötzinger (BötC) complexes are the brainstem compartments containing interneurons considered to be critically involved in generating respiratory rhythm and motor pattern in mammals. Current models postulate that both generation of the rhythm and coordination of the inspiratory-expiratory pattern involve inhibitory synaptic interactions within and between these regions. Both regions contain glycinergic and GABAergic neurons, and rhythmically active neurons in these regions receive appropriately coordinated phasic inhibition necessary for generation of the normal three-phase respiratory pattern. However, recent experiments attempting to disrupt glycinergic and GABAergic postsynaptic inhibition in the pre-BötC and BötC in adult rats in vivo have questioned the critical role of synaptic inhibition in these regions, as well as the importance of the BötC, which contradicts previous physiological and pharmacological studies. To further evaluate the roles of synaptic inhibition and the BötC, we bilaterally microinjected the GABAA receptor antagonist gabazine and glycinergic receptor antagonist strychnine into the pre-BötC or BötC in anesthetized adult rats in vivo and in perfused in situ brainstem-spinal cord preparations from juvenile rats. Muscimol was microinjected to suppress neuronal activity in the pre-BötC or BötC. In both preparations, disrupting inhibition within pre-BötC or BötC caused major site-specific perturbations of the rhythm and disrupted the three-phase motor pattern, in some experiments terminating rhythmic motor output. Suppressing BötC activity also potently disturbed the rhythm and motor pattern. We conclude that inhibitory circuit interactions within and between the pre-BötC and BötC critically regulate rhythmogenesis and are required for normal respiratory motor pattern generation.

摘要

前包钦格复合体(pre-BötC)和包钦格复合体(BötC)是脑干中的区域,其中含有中间神经元,这些中间神经元被认为在哺乳动物呼吸节律和运动模式的产生中起着关键作用。目前的模型推测,节律的产生以及吸气-呼气模式的协调都涉及这些区域内部和之间的抑制性突触相互作用。这两个区域都含有甘氨酸能和γ-氨基丁酸能神经元,并且这些区域中有节律性活动的神经元接受适当协调的相位抑制,这是产生正常三相呼吸模式所必需的。然而,最近试图在成年大鼠体内破坏pre-BötC和BötC中甘氨酸能和γ-氨基丁酸能突触后抑制的实验,对这些区域中突触抑制的关键作用以及BötC的重要性提出了质疑,这与之前的生理学和药理学研究相矛盾。为了进一步评估突触抑制和BötC的作用,我们在成年麻醉大鼠体内以及幼年大鼠的灌注原位脑干-脊髓标本中,将GABAA受体拮抗剂荷包牡丹碱和甘氨酸能受体拮抗剂士的宁双侧微量注射到pre-BötC或BötC中。微量注射蝇蕈醇以抑制pre-BötC或BötC中的神经元活动。在这两种标本中,破坏pre-BötC或BötC内的抑制会导致节律出现主要的位点特异性扰动,并破坏三相运动模式,在某些实验中会终止节律性运动输出。抑制BötC的活动也会强烈干扰节律和运动模式。我们得出结论,pre-BötC和BötC内部以及它们之间的抑制性回路相互作用对节律发生起着关键调节作用,并且是正常呼吸运动模式产生所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a11/4867025/5843a2c2a0d9/enu002162052r001.jpg

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