氨对柠檬酸致猪咳嗽的抑制作用:可能与P物质有关。

B Moreaux, A Nemmar, D Beerens, P Gustin
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引用次数: 8

摘要

评估了氨对咳嗽对柠檬酸反应的影响以及参与该反射的c -纤维释放P物质的影响。在一到四天的时间里,仔猪在吸入室中暴露于浓度为15或30 ppm的氨中。暴露期间,每两天进行一次咳嗽诱导试验。测定氨暴露后咳嗽反射的恢复情况。在另一组暴露于30ppm氨环境2 d的仔猪中,测定了支气管和气管灌洗液以及气管和支气管粘膜中P物质的含量。暴露两天后,发现氨(30 ppm)可显著抑制咳嗽(咳嗽频率降低64%)。在暴露于该氨浓度4天的动物中,恢复时间为3至7天(平均为5天)。同样的氨浓度也导致支气管肺泡灌洗液和气管灌洗液P物质含量显著升高(分别为初始值的432%和149%),气管黏膜P物质含量显著降低(-58%),而支气管黏膜P物质含量未受显著影响(-43%)。暴露于15 ppm的氨对柠檬酸引起的咳嗽频率没有影响。综上所述,在猪场检测到的浓度下,氨可抑制柠檬酸引起的猪咳嗽。这种抑制作用可能与c -纤维末梢p物质耗竭有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibiting effect of ammonia on citric acid-induced cough in pigs: a possible involvement of substance P.

The effect of ammonia on the cough response to citric acid and on substance P release from C-fibers involved in this reflex was assessed. For a period from one to four days, piglets were exposed, in an inhalation chamber, to ammonia at a concentration of 15 or 30 ppm. During exposure, cough induction tests were done every two days. Recovery of the cough reflex after ammonia exposure was also determined. In a separate group of piglets exposed for 2 days to 30 ppm ammonia, substance P content was determined in bronchial and tracheal lavage fluids and in the tracheal and bronchial mucosa. Ammonia (30 ppm) was found to inhibit coughing significantly (the cough frequency was reduced by 64%) after a two-day exposure. In animals exposed for 4 days to this ammonia concentration, the recovery ranged from 3 to 7 days (mean: 5 days). The same ammonia concentration also caused the substance P content to increase significantly in bronchoalveolar lavage fluid (to 432% of its initial value) and tracheal lavage fluid (to 149%) and to decrease significantly in the tracheal mucosa (-58%), however the content in bronchial mucosa was not significantly affected (-43%). Exposure to 15 ppm ammonia had no effect on the frequency of citric acid-induced coughing. In conclusion, ammonia inhibits citric acid-induced coughing in pigs at concentrations that can be detected in piggeries. This inhibitory effect may be related to substance-P depletion in C-fiber endings.

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