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非肾上腺素能、非胆碱能反应可抵消豚鼠气道张力在有或没有交感神经激活情况下的变化。

The non-adrenergic, non-cholinergic response counteracts changes in guinea-pig airway tone with and without sympathetic activation.

作者信息

Lindén A, Ullman A, Skoogh B E, Löfdahl C G

机构信息

Division of Pulmonary Medicine, Renströmska Hospital, University of Göteborg, Sweden.

出版信息

Br J Pharmacol. 1992 Jul;106(3):616-22. doi: 10.1111/j.1476-5381.1992.tb14384.x.

Abstract
  1. We examined whether the non-adrenergic, non-cholinergic (NANC) neural response can counteract changes in smooth-muscle tone with and without simultaneous sympathetic activation in guinea-pig airways. 2. Isolated airway preparations were pretreated with indomethacin (10 microM) and incubated with either atropine (1 microM) and guanethidine (10 microM) or atropine (1 microM) alone. The response to electrical field stimulation (EFS: 1200 mA, 0.5 ms, 3 Hz for 240 s) was studied at various levels of tone prior to EFS: first without induced tone, then at a moderate tone induced by histamine (0.3 microM) and finally at a high tone induced by histamine (6 microM). 3. The response to EFS was a contraction when the tone prior to EFS was low and a relaxation when the tone prior to EFS was high. These responses converged towards a similar level of tone, in the distal trachea and in the main bronchus, with and without guanethidine. 4. The mean (s.e. mean) level of tone towards which the responses to EFS converged was lower after incubation with atropine alone compared with incubation with atropine and guanethidine, both in the distal trachea [8 (1)% compared with 30 (6)% of maximum tone] and in the main bronchus [28 (4)% compared with 57 (2)% of maximum tone]. In separate experiments, the guanethidine-induced effect on the responses to EFS was imitated by propranolol (1 microM) but not by prazosin (0.3 microM) and yohimbine (1 microM). 5. These findings indicate that the NANC neural response can counteract changes in airway smooth-muscle tone via a contraction or via a relaxation, depending on the tone prior to activation.This stabilizing effect on tone does not appear to depend upon adrenergic activation per se. The level of tone towards which the NANC responses converge can, however, be reduced by beta-adrenoceptor activation, thus suggesting an interaction which provides protection from severe airway smooth-muscle contraction.
摘要
  1. 我们研究了在豚鼠气道中,非肾上腺素能、非胆碱能(NANC)神经反应能否在有无交感神经同时激活的情况下抵消平滑肌张力的变化。2. 将离体气道标本用吲哚美辛(10微摩尔)预处理,然后与阿托品(1微摩尔)和胍乙啶(10微摩尔)或仅与阿托品(1微摩尔)一起孵育。在电场刺激(EFS:1200毫安,0.5毫秒,3赫兹,持续240秒)之前的不同张力水平下研究对其的反应:首先是无诱导张力时,然后是组胺(0.3微摩尔)诱导的中等张力时,最后是组胺(6微摩尔)诱导的高张力时。3. 当EFS前的张力较低时,对EFS的反应是收缩,而当EFS前的张力较高时则是舒张。无论有无胍乙啶,在远端气管和主支气管中,这些反应都趋向于相似的张力水平。4. 与阿托品和胍乙啶一起孵育相比,单独用阿托品孵育后,EFS反应趋向的平均(标准误)张力水平在远端气管中更低[分别为最大张力的8(1)%和30(6)%],在主支气管中也更低[分别为最大张力的28(4)%和57(2)%]。在单独的实验中,普萘洛尔(1微摩尔)可模拟胍乙啶对EFS反应的影响,但哌唑嗪(0.3微摩尔)和育亨宾(1微摩尔)则不能。5. 这些发现表明,NANC神经反应可通过收缩或舒张来抵消气道平滑肌张力的变化,这取决于激活前的张力。这种对张力的稳定作用似乎并不依赖于肾上腺素能激活本身。然而,NANC反应趋向的张力水平可因β-肾上腺素能受体激活而降低,从而提示存在一种相互作用,可防止气道平滑肌严重收缩。

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