首页> 外文期刊>The Journal of Physiology >Chemosensory and cholinergic stimulation of fictive respiration in isolated CNS of neonatal opossum.
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Chemosensory and cholinergic stimulation of fictive respiration in isolated CNS of neonatal opossum.

机译:新生负鼠中枢神经系统离体中虚拟呼吸的化学感觉和胆碱能刺激。

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1. The aim of the present experiments was to characterize the central chemical drive of fictive respiration in the isolated CNS of the newborn opossum, Monodelphis domestica. This opossum preparation, in contrast to those of neonatal rats and mice, produces respiratory rhythm of high frequency in vitro. 2. Fictive respiration was recorded from C3-C5 ventral roots of the isolated CNS of 4- to 14-day-old opossums using suction electrodes. At room temperature (21-23 degrees C) the frequency of respiration was 43 +/- 5.3 min-1 (mean +/- S.E.M., n = 50) in basal medium Eagle's medium (BMEM) equilibrated with 5% CO2-95% O2, pH 7.37-7.40. Respiratory discharges remained regular throughout 8 h experiments and continued for more than 20 h in culture. 3. Superfusion of the brainstem confirmed that solutions of pH 6.3-7.2 increased both the amplitude and frequency of respiration. High pH solutions (7.5-7.7) had the opposite effect and abolished the rhythm at pH 7.7. Addition of ACh (50-100 microM) or carbachol (0.01-10 microM) to the brainstem superfusion also increased the amplitude and frequency of respiratory activity, as did physostigmine (50-100 microM) or neostigmine (20-50 microM). Conversely, scopolamine (50-100 microM) reduced the amplitude and frequency of the basal respiratory rhythm by about 30%. 4. H(+)- and cholinergic-sensitive areas on the surface of the isolated CNS were explored with a small micropipette (outer tip diameter, 100 microns) filled with BMEM (pH 6.5) or 1 microM carbachol. Carbachol applied to H(+)- and cholinergic-sensitive areas in the ventral medulla mimicked the changes of respiratory pattern produced by low pH application. Responses to altered pH and carbachol were abolished by scopolamine (50 microM). Histochemistry demonstrated several medullary groups of neurons stained for acetylcholinesterase. The superficial location of one of these groups coincided with a functional and anatomically well-defined pH- and carbachol-sensitive area placed medial to the hypoglossal roots. 5. Exploration of chemosensitive areas revealed that application of drugs or solutions of different pH to a single well-defined spot could have selective and distinctive effects upon amplitude and frequency of respiratory activity. 6. These results show that fictive respiration in the isolated CNS of the newborn opossum is tonically driven by chemical- and cholinergic-sensitive areas located on the ventral medulla, the activity of which regulates frequency and amplitude of respiration. They suggest that a cholinergic relay, although not essential for rhythm generation, is involved in the central pH chemosensory mechanism, or that cholinergic and chemical inputs converge upon the same input pathway to the respiratory pattern generator.
机译:1.本实验的目的是表征新生负鼠(Monodelphis domestica)分离的中枢神经系统中虚构呼吸的主要化学驱动力。与新生大鼠和小鼠相反,这种负鼠制剂在体外产生高频呼吸节律。 2.使用抽吸电极记录了4至14天大的负鼠的离体CNS的C3-C5腹侧根的假想呼吸。在室温(21-23摄氏度)下,在以5%CO2-95%平衡的基础培养基Eagle培养基(BMEM)中,呼吸频率为43 +/- 5.3 min-1(平均+/- SEM,n = 50) O2,pH 7.37-7.40。在整个8小时实验中,呼吸排出物均保持规律,并在培养中持续20多个小时。 3.脑干灌注确认pH 6.3-7.2的溶液增加了呼吸的幅度和频率。高pH溶液(7.5-7.7)具有相反的效果,并且取消了pH 7.7时的节奏。在脑干灌注中添加ACh(50-100 microM)或卡巴胆碱(0.01-10 microM)也会增加呼吸活动的幅度和频率,而毒扁豆碱(50-100 microM)或新斯的明(20-50 microM)也是如此。相反,东pol碱(50-100 microM)使基础呼吸节律的幅度和频率降低约30%。 4.用装满BMEM(pH 6.5)或1 microM卡巴胆碱的小微量移液管(尖端外径,100微米)探查分离的CNS表面的H(+)-和胆碱能敏感区域。卡巴胆碱应用于腹髓的H(+)-和胆碱能敏感区域,可模仿低pH值所产生的呼吸模式变化。东pol碱(50 microM)消除了对改变的pH和卡巴胆碱的反应。组织化学表明,神经元的几个髓质组被乙酰胆碱酯酶染色。这些组之一的表面位置与位于舌下根中间的功能性和解剖学上明确定义的pH和卡巴胆碱敏感区域相吻合。 5.对化学敏感区域的研究表明,将不同pH值的药物或溶液应用于单个明确定义的部位可能会对呼吸活动的幅度和频率产生选择性和独特的影响。 6.这些结果表明,新生的负鼠中枢神经系统中的虚构呼吸由腹侧延髓上的化学和胆碱能敏感区域以声调驱动,其活动调节呼吸的频率和幅度。他们认为,胆碱能传递尽管不是节律产生所必需的,但仍参与了中央pH的化学感应机制,或者胆碱能和化学物质的输入汇聚在通向呼吸模式产生器的同一输入路径上。

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