Thunderstorm allergy and asthma: state of the art.

IF 2 Q3 RESPIRATORY SYSTEM
Multidisciplinary Respiratory Medicine Pub Date : 2021-12-02 eCollection Date: 2021-01-15 DOI:10.4081/mrm.2021.806
Gennaro D'Amato, Isabella Annesi-Maesano, Marilyn Urrutia-Pereira, Stefano Del Giacco, Nelson A Rosario Filho, Herberto J Chong-Neto, Dirceu Solé, Ignacio Ansotegui, Lorenzo Cecchi, Alessandro Sanduzzi Zamparelli, Emma Tedeschini, Benedetta Biagioni, Margarita Murrieta-Aguttes, Maria D'Amato
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引用次数: 19

Abstract

Thunderstorm-triggered asthma (TA) can be defined as the occurrence of acute asthma attacks immediately following a thunderstorm during pollen seasons. Outbreaks have occurred across the world during pollen season with the capacity to rapidly inundate a health care service, resulting in potentially catastrophic outcomes for allergic patients. TA occurs when specific meteorological and aerobiological factors combine to affect predisposed atopic patients with IgE-mediated sentitization to pollen allergens. Thunderstorm outflows can concentrate aeroallergens, most commonly grass pollen but also other pollens such as Parietaria and moulds in TA, at ground level to release respirable allergenic particles after rupture by osmotic shock related to humidity and rainfall. Inhalation of high concentrations of these aeroallergens by sensitized individuals can induce early asthmatic responses which can be followed by a late inflammatory phase. There is evidence that, during pollen season, thunderstorms can induce allergic asthma outbreaks, sometimes also severe asthma crisis and sometimes deaths in patients suffering from pollen allergy. It has been observed that changes in the weather such as rain or humidity may induce hydratation of pollen grains during pollen seasons and sometimes also their fragmentation which generates atmospheric biological aerosols carrying allergens. Asthma attacks are induced for the high concentration at ground level of pollen grains which may release allergenic particles of respirable size after rupture by osmotic shock. In other words, it is a global health problem observed in several cities and areas of the world that can strike without sufficient warning, inducing sometimes severe clinical consequences also with deaths of asthma patients. Due to constant climate change, future TA events are likely to become more common, more disastrous and more unpredictable, as a consequence it is important to have deep knowledge on this topic to prevent asthma attacks. Other environmental factors, such as rapid changes in temperature and agricultural practices, also contribute to causing TA.

Abstract Image

雷暴过敏和哮喘:最先进的。
雷暴引发哮喘(thunderstorm -triggered asthma, TA)是指花粉季节雷暴过后立即发生的急性哮喘发作。在花粉季节,世界各地都发生了疫情,有能力迅速淹没卫生保健服务,对过敏患者造成潜在的灾难性后果。当特定的气象和生物因素共同影响ige介导的对花粉过敏原敏感的易感特应性患者时,TA就会发生。雷暴气流可以将空气过敏原(最常见的是草花粉,但也有其他花粉,如TA中的壁虫和霉菌)集中在地面,在与湿度和降雨有关的渗透冲击破裂后释放可呼吸的过敏原颗粒。致敏个体吸入高浓度的这些气体过敏原可诱发早期哮喘反应,随后可出现晚期炎症期。有证据表明,在花粉季节,雷暴可引起过敏性哮喘暴发,有时还会引起严重的哮喘危机,有时会导致花粉过敏患者死亡。据观察,在花粉季节,降雨或湿度等天气变化可能导致花粉粒水化,有时也会导致花粉粒破碎,从而产生携带过敏原的大气生物气溶胶。花粉粒在地面上浓度高,经渗透休克破裂后可释放可呼吸大小的致敏颗粒,可诱发哮喘发作。换句话说,这是一个在世界上几个城市和地区观察到的全球性健康问题,可以在没有充分预警的情况下发生,有时会引起严重的临床后果,也会导致哮喘患者死亡。由于持续的气候变化,未来的哮喘事件可能会变得更加常见、更具灾难性和更不可预测,因此深入了解这一主题对于预防哮喘发作非常重要。其他环境因素,如温度和农业实践的快速变化,也有助于造成热污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
23
审稿时长
>12 weeks
期刊介绍: Multidisciplinary Respiratory Medicine is the official journal of the Italian Respiratory Society - Società Italiana di Pneumologia (IRS/SIP). The journal publishes on all aspects of respiratory medicine and related fields, with a particular focus on interdisciplinary and translational research. The interdisciplinary nature of the journal provides a unique opportunity for researchers, clinicians and healthcare professionals across specialties to collaborate and exchange information. The journal provides a high visibility platform for the publication and dissemination of top quality original scientific articles, reviews and important position papers documenting clinical and experimental advances.
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