Karlsson J A
Arch Int Pharmacodyn Ther. 1986 Apr;280(2 Suppl):191-207.
Functional studies indicate that the regulation of the tone in the guinea-pig airways in part involves non-adrenergic non-cholinergic (NANC) neural mechanisms. The characteristics of the relaxation induced by field stimulation of the non-adrenergic inhibitory neural system differed from those of the relaxation induced by purine derivatives. Furthermore, the presence of a maximally relaxant concentration of a purine or VIP did not affect the neurogenic inhibition. Thus, other transmitter candidates for the NANC inhibitory response than purines and VIP should be searched for. An atropine-resistant neurogenic bronchoconstriction was found to be abolished by capsaicin pretreatment. Capsaicin also reduced the lung content of substance P-like immunoreactivity. A tachykinin, possibly a neurokinin A-like peptide, has been considered to be the mediator of the NANC neural bronchoconstriction. Moreover, activation of NANC nerves may enhance airway microvascular permeability to macromolecules. Whether NANC nerves are involved in the neurogenic control of secretion from submucosal glands and of mucociliary clearance in guinea-pig airways remains to be shown.
功能研究表明,豚鼠气道张力的调节部分涉及非肾上腺素能非胆碱能(NANC)神经机制。非肾上腺素能抑制神经系统的场刺激所诱导的舒张特性与嘌呤衍生物所诱导的舒张特性不同。此外,嘌呤或血管活性肠肽(VIP)的最大舒张浓度的存在并不影响神经源性抑制。因此,应寻找除嘌呤和VIP之外的其他可能作为NANC抑制反应的递质。发现一种对阿托品耐药的神经源性支气管收缩可被辣椒素预处理消除。辣椒素还降低了肺中P物质样免疫反应性的含量。一种速激肽,可能是神经激肽A样肽,被认为是NANC神经源性支气管收缩的介质。此外,NANC神经的激活可能会增强气道微血管对大分子的通透性。NANC神经是否参与豚鼠气道黏膜下腺分泌和黏液纤毛清除的神经源性控制仍有待证实。