豚鼠糖尿病抗原致敏气道中上皮介导的恶化机制

Q3 Medicine
S. Bano, Omanwar Swati, Muralidhar Kambadur, F. Mohammad
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引用次数: 2

摘要

糖尿病的发病会导致呼吸上皮介质的破坏。本研究探讨糖尿病是否主要通过一氧化氮(NO)、环氧合酶(COX)和上皮源性超极化因子(EpDHF)途径改变气道平滑肌(ASM)中上皮介导的支气管反应。方法建立伴有或不伴有糖尿病的高反应性气道豚鼠实验模型。NO、K+ATP和COX抑制剂、N-(ω)-硝基- l -精氨酸甲酯(L-NAME)孵育前后气管环对乙酰胆碱(ACh)和异丙肾上腺素(IP)累积浓度的反应;100µM)、格列苯脲(10µM)和吲哚美辛(100µM)。结果在高反应性气道的糖尿病豚鼠中,去除上皮和L-NAME/吲哚美辛孵育后,观察到乙酰胆碱引起的支气管收缩减少,提示NO/COX通路受损。高反应性没有改变气管对乙酰胆碱的反应,但影响了对乙酰胆碱的反应,糖尿病高反应性动物的反应进一步降低。在高反应性豚鼠和具有高反应性气道的糖尿病豚鼠中,格列本脲治疗后对IP的ASM反应没有改变,提示EpDHF通路受损。吲哚美辛治疗降低了高反应模型的IP反应,而在高反应气道的糖尿病模型中未产生任何变化,表明COX通路进一步被破坏。结论EpDHF通路在高反应性豚鼠和伴有高反应性气道的糖尿病豚鼠中存在损伤。糖尿病进一步加重气道高反应性糖尿病豚鼠的NO和COX介导通路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deterioration of epithelium mediated mechanisms in diabetic-antigen sensitized airways of guinea pigs
Background The onset of diabetes causes disruption of respiratory epithelial mediators. The present study investigates whether diabetes modifies the epithelium mediated bronchial responses in hyper-reactive airway smooth muscle (ASM) primarily through nitric oxide (NO), cyclooxygenase (COX), and epithelium derived hyperpolarizing factor (EpDHF) pathways. Methods Experimental model of guinea pigs having hyper-reactive airways with or without diabetes were developed. The responses of tracheal rings to cumulative concentrations of acetylcholine (ACh) and isoproterenol (IP) in the presence and absence of epithelium and before and after incubation with NO, K+ATP and COX inhibitors, N-(ω)-Nitro-L-arginine methyl ester (L-NAME; 100 µM), glybenclamide (10 µM) and indomethacin (100 µM) were assessed. Results In diabetic guinea pigs with hyper-reactive airways, a decrease in ACh induced bronchoconstriction was observed after epithelium removal and after incubation with L-NAME/indomethacin, suggesting damage to NO/COX pathways. Hyper-reactivity did not alter the response of trachea to ACh but affected the response to IP which was further reduced in hyper-reactive animals with diabetes. The ASM response to IP after glybenclamide treatment did not alter in hyper-reactive guinea pigs and diabetic guinea pigs with hyper-reactive airways, suggesting damage to the EpDHF pathway. Treatment with indomethacin reduced IP response in the hyper-reactive model, and did not produce any change in diabetic model with hyper-reactive airways, indicating further disruption of the COX pathway. Conclusion EpDHF pathway is damaged in hyper-reactive guinea pigs and in diabetic guinea pigs with hyper-reactive airways. Diabetes further aggravates the NO and COX mediated pathways in diabetic guinea pigs with hyper-reactive airways.
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来源期刊
Journal of Smooth Muscle Research
Journal of Smooth Muscle Research Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
2.30
自引率
0.00%
发文量
7
审稿时长
10 weeks
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