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首页> 外文期刊>Annals of allergy, asthma, and immunology >Exercise-induced bronchoconstriction
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Exercise-induced bronchoconstriction

机译:运动引起的支气管收缩

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Objective: To review the literature regarding the pathophysiology of exercise-induced bronchoconstriction (EIB). Data Sources: The databases of PubMed, Ovid MEDLINE, and Scopus were searched for articles using the subject headings and/or keywords asthma, exercise-induced/etiology, exercise, mechanism, pathogenesis, and bronchoconstriction. Study Selections: Articles were selected based on their relevance to the focus of this review, with emphasis on the specific pathophysiologic mechanisms of EIB. Results: EIB occurs in response to the loss of water from the lower airways that results from heating and humidifying large volumes of air in a short period. The resulting hyperosmolar environment activates various cellular mechanisms to release mediators from mast cells, eosinophils, epithelial cells, and sensory nerves. These mediators, in turn, lead to airway smooth muscle contraction and bronchoconstriction. Airway hyperresponsiveness in elite athletes may develop from a process of airway injury and changes in the contractile properties of airway smooth muscle. Conclusion: EIB commonly affects individuals with and without clinically recognized asthma, especially those who participate in competitive athletics. Through years of research, the pathophysiology of EIB is now better understood and involves a complex interaction between several different cell types and mediators. Continued research to improve the knowledge regarding the mechanisms of EIB should aid the identification, diagnosis, and treatment of this common condition.
机译:目的:回顾运动诱发的支气管收缩(EIB)病理生理的文献。数据来源:使用主题词和/或关键字哮喘,运动诱发/病因,运动,机制,发病机制和支气管收缩,在PubMed,Ovid MEDLINE和Scopus的数据库中搜索文章。研究选择:选择文章的依据是其与本综述的重点相关,重点是EIB的特定病理生理机制。结果:EIB的出现是由于下呼吸道在短时间内对大量空气进行加热和加湿而导致的水损失。产生的高渗环境激活了各种细胞机制,以从肥大细胞,嗜酸性粒细胞,上皮细胞和感觉神经释放介质。这些介体又导致气道平滑肌收缩和支气管收缩。优秀运动员的气道高反应性可能是由气道损伤和气道平滑肌收缩特性变化引起的。结论:EIB通常会影响患有和没有临床公认的哮喘的个体,尤其是那些参加竞技运动的个体。通过多年的研究,EIB的病理生理学现已得到更好的理解,并且涉及几种不同细胞类型和介体之间的复杂相互作用。继续进行研究以提高有关EIB机制的知识,应有助于识别,诊断和治疗这种常见病。

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