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首页> 外文期刊>American Journal of Physiology >Influence of maturation on constrictive response to stimulation of C-fiber afferents in isolated guinea pig airways.
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Influence of maturation on constrictive response to stimulation of C-fiber afferents in isolated guinea pig airways.

机译:成熟对离体豚鼠呼吸道刺激C纤维传入的收缩反应的影响。

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We investigated whether the airway constrictive response to stimulation of bronchopulmonary C-fiber afferents is altered during the maturation process. Isometric tension was measured in airway rings isolated from three tracheobronchial locations (intrathoracic trachea and main and hilar bronchi) and compared in mature [M, 407 +/- 10 (SE) g body wt, n = 36] and immature (IM, 161 +/- 5 g body wt, n = 35) guinea pigs. Our results showed no difference in the ACh (10(-5) M)- or KCl (40 mM)-induced contraction between M and IM groups, regardless of the airway location. In sharp contrast, the concentration-response curves of 10(-8)-10(-6) M capsaicin were distinctly lower in IM hilar bronchi; for example, response to the same concentration of capsaicin (10(-6) M) was 89.2 +/- 15.3% of the response to 10(-5) M ACh in IM and 284.7 +/- 43.2% in M animals. Similar, but smaller, differences in the bronchoconstrictive response to capsaicin between IM and M groups were also observed in the trachea and main bronchus.Electrical field stimulation induced airway constriction in all three locations in M and IM groups. However, after administration of 10(-6) M atropine and 10(-6) M propranolol, electrical field stimulation-induced contraction was significantly smaller in the hilar bronchus of IM than M animals, and this difference was not prevented by pretreatment with 5 x 10(-5) M indomethacin. Although radioimmunoassay showed no difference in the tissue content of substance P between M and IM airways, the constrictive responses to exogenous substance P and neurokinin A were markedly greater in M airways at all three locations. In conclusion, the constriction of isolated airways evoked by C-fiber stimulation was significantly weaker in the IM guinea pigs, probably because of a less potent effect of tachykinins on the airway smooth muscle.
机译:我们研究了在成熟过程中气道对刺激支气管肺C纤维传入的收缩反应是否改变。测量了从三个气管支气管位置(胸腔内气管以及主支气管和肺门支气管)分离出的气道环的等距张力,并将其在成熟的[M,407 +/- 10(SE)g体重,n = 36]和未成熟的(IM,161)中进行了比较+/- 5 g体重,n = 35)豚鼠。我们的结果显示,无论气道位置如何,M和IM组之间ACh(10(-5)M)-或KCl(40 mM)诱导的收缩均无差异。与之形成鲜明对比的是,IM肺门支气管中10(-8)-10(-6)M辣椒素的浓度-响应曲线明显较低;例如,对相同浓度的辣椒素(10(-6)M)的响应为IM中对10(-5)M ACh的响应的89.2 +/- 15.3%,在M动物中为284.7 +/- 43.2%。 IM和M组之间在气管和主支气管中也观察到相似但较小的对辣椒素的支气管收缩反应差异。电场刺激在M和IM组的所有三个位置引起气道收缩。但是,在给予10(-6)M阿托品和10(-6)M普萘洛尔后,IM的肺门支气管中电场刺激诱导的收缩明显小于M动物,而用5预处理不能防止这种差异x 10(-5)M消炎痛。尽管放射免疫分析显示M和IM气道中P物质的组织含量没有差异,但是在这三个位置的M气道中,对外源性物质P和神经激肽A的收缩反应明显更大。总之,C-纤维刺激引起的孤立气道收缩在IM豚鼠中明显较弱,这可能是因为速激肽对气道平滑肌的作用较弱。

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