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Allergy and immunotoxicology in preventive and clinical medicine from theory to practice: Environmental factors in bronchial asthma

SANGYO EISEIGAKU ZASSHI 2024 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Takeshi Hisada, Yasumitsu Nishimura, Kunio Dobashi, Takahiko Yoshida, Toshihiro Itoh, Yasuo Morimoto, Narufumi Suganuma, Qing Li, Hiroo Wada, Atsuhi Ueda, Fujio Kayama, Kazuhiro Satoh, Minoru Satoh, Eiji Shibata, Tatsuya Takeshita, Hiroyuki Yanagisawa, Masashi Tsunoda

Summary

This review applies an exposome framework to bronchial asthma, identifying living-environment pollutants including microplastics, air pollution, tobacco smoke, climate change, and dietary changes as contributors to asthma pathogenesis and exacerbation.

Living environment-derived pollutants and their involvement in the pathogenesis of asthma and its exacerbation, referred to here as an exposome concept, comprises the three domains of internal, specific external, and general external. Living environment-derived pollutants include exposure to pollutants in workplaces, climate change, air pollution, microplastics, tobacco smoke, biodiversity change and loss, changing dietary habits, and the microbiome. These are associated with the modernization, urbanization, and globalization of human society. Although many novel compounds are currently available, their harmful health effects, such as allergy, are not thoroughly understood. Hence, the means to mitigate these are unknown. Dietary changes from a traditional diet rich in fish to a Western-style diet are considered critical environmental factors and therefore, associated with an increased prevalence of allergies. Cytokines, including thymic stromal lymphopoietin, IL-25, and IL-33, released from the airway epithelium in response to various triggers (exposure to diverse environmental factors) are known as alarmins. Anti-alarmin antibodies are a promising therapeutic approach against severe and difficult allergic disorders. Collaboration between hospitals and clinics and occupational and clinical medicine is imperative for treating and managing severe asthma. In addition to avoiding environmental exposure, understanding the pathogenesis and exacerbation of asthma is essential for future research in the field of allergy and immunotoxicology.

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