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Effect of aspiration of milk on mechanisms of neural control in the airways of developing rabbits.

机译:吸乳对发育中兔气道神经控制机制的影响。

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We studied the effects of recurrent aspiration of milk on neural control of airways in young developing rabbits. Beginning at 1 week of age, rabbits received 0.5 ml/kg of whole milk or sterile physiologic saline intranasally while under light methoxyflourane anesthesia 5 days a week for a period of 3 weeks. At 4 and 8 weeks of age, in vitro studies of contractile and relaxant responses of tracheal smooth muscle (TSM) segments were evaluated. To assess the neurally mediated contractile responses, frequency response curves to electrical field stimulation (EFS) were performed with results expressed in terms of frequency of EFS causing 50% of the maximal contractile response (ES50) values. In addition, the contractile responsiveness of TSM to methacholine (MCh) as reflected by the concentration causing 50% of the maximal contractile response (EC50) values was also determined to evaluate the underlying cholinergic reactivity of this segment of airway. To assess nonadrenergic noncholinergic inhibitory (NANCi) responses, experiments were performed on TSM contracted with neurokinin A in the presence of atropine, propranolol, and indomethacin. EFS was delivered to the contracted tissue at stimulation frequencies ranging from 5 to 30 Hz with results expressed as mean percent relaxation. Recurrent aspiration of milk but not saline increased EFS-induced contractile responses, as shown by significantly lower ES50 values compared with the control group: P = 0.02 and P = 0.001 at 4 and 8 weeks of age, respectively. TSM responsiveness to MCh was no different between the two groups, suggesting that alterations in prejunctional mechanisms of neural control were most likely responsible for the increased contractile response to EFS. The NANCi responses were significantly decreased by milk aspiration at both 4 and 8 weeks of age, with the abnormalities less pronounced at the later time point. These findings demonstrate that repeated aspiration of milk leads to abnormal mechanisms of neural control within airways of developing rabbits. While aspiration of milk altered both contractile and relaxant responses to EFS, the former abnormalities became more pronounced with time while the latter appeared to be resolving. These observations suggest that injury to an airway early in development does not necessarily resolve with time but may persist, with functional abnormalities becoming more pronounced even after the airway insult has ceased.
机译:我们研究了反复抽吸牛奶对发育中的幼兔气道神经控制的影响。从1周龄开始,兔子每周0.5天在轻度甲氧基氟烷麻醉下接受0.5 ml / kg的全乳或鼻腔无菌生理盐水,持续3周。在4周和8周龄时,评估了气管平滑肌(TSM)节段收缩和松弛反应的体外研究。为了评估神经介导的收缩反应,执行了电场刺激(EFS)的频率响应曲线,结果以EFS频率表示,引起最大收缩反应(ES50)值的50%。此外,还确定了TSM对乙酰甲胆碱(MCh)的收缩反应性,​​该浓度反映了引起最大收缩反应(EC50)值50%的浓度,以评估该段气道的潜在胆碱能反应性。为了评估非肾上腺能非胆碱能抑制(NANCi)反应,在存在阿托品,普萘洛尔和消炎痛的情况下,对与神经激肽A收缩的TSM进行了实验。 EFS以5到30 Hz的刺激频率传递到收缩的组织,结果表示为平均松弛百分比。反复抽吸牛奶而不是盐水可增加EFS诱导的收缩反应,如与对照组相比,ES50值明显降低:分别在4周和8周龄时P = 0.02和P = 0.001。两组之间TSM对MCh的反应没有差异,这表明神经控制的连接前机制的改变最有可能导致对EFS的收缩反应增加。在4周和8周龄时,吸奶可显着降低NANCi反应,在随后的时间点,异常现象不明显。这些发现表明,反复抽吸牛奶会导致发育中兔气道内神经控制的异常机制。虽然吸奶改变了对EFS的收缩反应和松弛反应,但随着时间的流逝,前者的异常现象变得更加明显,而后者似乎已得到解决。这些观察结果表明,发育早期对气道的伤害并不一定会随着时间的流逝而解决,而是可能持续存在,即使气道损害停止后,功能异常也会变得更加明显。

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