首页> 美国卫生研究院文献>The Journal of Physiology >Central effects of 5-HT on activity of respiratory and hypoglossally innervated muscles in newborn kittens.
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Central effects of 5-HT on activity of respiratory and hypoglossally innervated muscles in newborn kittens.

机译:5-HT对新生小猫呼吸道和舌下支配神经活动的影响。

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摘要

1. In decerebrate kittens (n = 29), electrical activity was studied in the 3rd intercartilaginous (inspiratory), the 9th internal intercostal (expiratory) and the hypoglossally innervated muscles (geniohyoid m. and sternohyoid m.) evoked by the application of 5-HT (n = 16) or related agents (5-HT1A agonist, 8-OH-DPAT (n = 6) and 5-HT2 agonist, DOI floor of the IVth ventricle. 2. The application of a control solution (n = 2) produced no significant changes either in minute inspiratory frequency (Fi) or in the electrical activity of the muscles studied. Except for these controls, only one trial with one dose of one drug was performed in a given kitten. 3. A dose-related decrease in Fi was observed in response to 5-HT. Low doses (50-500 nmol, n1 = 8) induced a long-lasting bradypnoea; high doses (5000-10,000 nmol, n2 = 8) induced prolonged periods of apnoea. 4. The apnoeas observed in tracheotomized (n = 3) or non-tracheotomized (n2 = 8) kittens were mainly of central origin and linked to the lengthening of expiratory time. The expiratory muscle activation came on with the reinforcement of the activity of hypoglossally innervated muscles. 5. Application of agonists showed that both the 5-HT-dependent modulation of Fi and the effects of 5-HT on the activity of the muscles studied resulted predominantly from activation of 5-HT2 receptors.
机译:1.在无脑的小猫(n = 29)中,通过应用5诱发了第3软骨间(吸气),第9肋间内(呼气)和舌下支配神经(膝舌舌骨和胸骨舌骨)的电活动。 -HT(n = 16)或相关药物(5-HT1A激动剂,8-OH-DPAT(n = 6)和5-HT2激动剂,第四脑室的DOI底。2.对照溶液的应用(n = 2)在所研究的肌肉的分钟吸气频率(Fi)或电活动方面均无明显变化,除这些对照外,在一只给定的小猫中只进行了一次用一种剂量的一种药物进行的试验3。观察到5-HT引起的Fi相关性降低;低剂量(50-500 nmol,n1 = 8)引起持久的缓呼吸;高剂量(5000-10,000 nmol,n2 = 8)引起呼吸暂停延长。 4.在气管切开(n = 3)或未气管切开(n2 = 8)的小猫中观察到的呼吸暂停主要来自中枢,与呼气时间的延长。呼气肌的激活伴随着舌下支配肌的活动增强。 5.激动剂的应用表明,Fi的5-HT依赖性调节和5-HT对所研究的肌肉活性的影响均主要由5-HT 2受体的活化引起。

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