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Exercise Induced

Exercise increases exhaled breath condensate cysteinyl leukotriene concentration in asthmatic patients

, M.D., , M.D., , Ph.D., , M.D., , M.D., , M.D., Ph.D., , M.D., D.Sc. & , M.D., D.Sc. show all
Pages 1057-1062 | Published online: 08 Nov 2010

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Behrouz Seyfinejad, Emirhan Nemutlu, Ali Taghizadieh, Maryam Khoubnasabjafari, Sibel A Ozkan & Abolghasem Jouyban. (2023) Biomarkers in Exhaled Breath Condensate as Fingerprints of Asthma, Chronic Obstructive Pulmonary Disease and Asthma–Chronic Obstructive Pulmonary Disease Overlap: A Critical Review. Biomarkers in Medicine 17:19, pages 811-837.
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Chikako Motomura, Hiroshi Matsuzaki, Hiroshi Odajima, Takeshi Oki, Yusuke Yasunari, Toshiaki Kawano, Mihoko Iwata, Koki Okabe, Masatoshi Wakatsuki, Yoko Murakami, Naohiko Taba, Satoshi Honjo & Shouichi Ohga. (2022) Effect of age on exercise-induced bronchoconstriction in children and adolescents with asthma. Journal of Asthma 59:2, pages 297-305.
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Ozlem Keskin, Mehmet Yasar Ozkars, Bulent Gogebakan, Ercan Kucukosmanoglu, Mehmet Keskin & Hasan Bayram. (2021) Exhaled TGF-β1 levels before and after an exercise challenge in asthmatic and healthy children, and during exacerbation. Journal of Asthma 58:3, pages 316-325.
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Marcin Kurowski, Sven Seys, Matteo Bonini, Stefano Del Giacco, Luis Delgado, Zuzana Diamant, Marek L. Kowalski, André Moreira, Maia Rukhadze & Mariana Couto. (2022) Physical exercise, immune response, and susceptibility to infections—current knowledge and growing research areas. Allergy 77:9, pages 2653-2664.
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Bushra Mubarak, Huma Shakoor & Fozia Masood. 2019. Asthma - Biological Evidences. Asthma - Biological Evidences.
Airi Jo-Watanabe, Toshiaki Okuno & Takehiko Yokomizo. (2019) The Role of Leukotrienes as Potential Therapeutic Targets in Allergic Disorders. International Journal of Molecular Sciences 20:14, pages 3580.
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John D. Brannan & John M. Weiler. 2018. Allergy and Asthma. Allergy and Asthma 1 37 .
John D. Brannan & John M. Weiler. 2019. Allergy and Asthma. Allergy and Asthma 401 437 .
Kenneth P. Hough, Landon S. Wilson, Jennifer L. Trevor, John G. Strenkowski, Njeri Maina, Young-Il Kim, Marion L. Spell, Yong Wang, Diptiman Chanda, Jose Rodriguez Dager, Nirmal S. Sharma, Miranda Curtiss, Veena B. Antony, Mark T. Dransfield, David D. Chaplin, Chad Steele, Stephen Barnes, Steven R. Duncan, Jeevan K. Prasain, Victor J. Thannickal & Jessy S. Deshane. (2018) Unique Lipid Signatures of Extracellular Vesicles from the Airways of Asthmatics. Scientific Reports 8:1.
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Marcin Kurowski, Janusz Jurczyk, Agnieszka Olszewska-Ziąber, Marzanna Jarzębska, Hubert Krysztofiak & Marek L. Kowalski. (2018) A similar pro/anti-inflammatory cytokine balance is present in the airways of competitive athletes and non-exercising asthmatics. Advances in Medical Sciences 63:1, pages 79-86.
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Liam M. Heaney & Martin R. Lindley. (2017) Translation of exhaled breath volatile analyses to sport and exercise applications. Metabolomics 13:11.
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John M. Weiler, John D. Brannan, Christopher C. Randolph, Teal S. Hallstrand, Jonathan Parsons, William Silvers, William Storms, Joanna Zeiger, David I. Bernstein, Joann Blessing-Moore, Matthew Greenhawt, David Khan, David Lang, Richard A. Nicklas, John Oppenheimer, Jay M. Portnoy, Diane E. Schuller, Stephen A. Tilles & Dana Wallace. (2016) Exercise-induced bronchoconstriction update—2016. Journal of Allergy and Clinical Immunology 138:5, pages 1292-1295.e36.
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Marek Sanak. (2016) Eicosanoid Mediators in the Airway Inflammation of Asthmatic Patients: What is New?. Allergy, Asthma & Immunology Research 8:6, pages 481.
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O. F. Araneda, T. Carbonell & M. Tuesta. (2016) Update on the Mechanisms of Pulmonary Inflammation and Oxidative Imbalance Induced by Exercise. Oxidative Medicine and Cellular Longevity 2016, pages 1-23.
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Efstathia M. Konstantinidi, Andreas S. Lappas, Anna S. Tzortzi & Panagiotis K. Behrakis. (2015) Exhaled Breath Condensate: Technical and Diagnostic Aspects. The Scientific World Journal 2015, pages 1-25.
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Mario Barreto, Rosanna Zambardi & Maria Pia Villa. (2015) Exhaled nitric oxide and other exhaled biomarkers in bronchial challenge with exercise in asthmatic children: current knowledge. Paediatric Respiratory Reviews 16:1, pages 68-74.
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Min Liu & Takehiko Yokomizo. (2015) The role of leukotrienes in allergic diseases. Allergology International 64:1, pages 17-26.
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Andras Bikov, Gabriella Galffy, Lilla Tamasi, Dora Bartusek, Balazs Antus, Gyorgy Losonczy & Ildiko Horvath. (2014) Exhaled breath condensate pH decreases during exercise‐induced bronchoconstriction . Respirology 19:4, pages 563-569.
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Gabriel K. Wong & Mamidipudi T. Krishna. (2013) Food-Dependent Exercise-Induced Anaphylaxis: Is Wheat Unique?. Current Allergy and Asthma Reports 13:6, pages 639-644.
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Teal S. Hallstrand, William A. Altemeier, Moira L. Aitken & William R. HendersonJr.Jr.. (2013) Role of Cells and Mediators in Exercise-Induced Bronchoconstriction. Immunology and Allergy Clinics of North America 33:3, pages 313-328.
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Hasib Ahmadzai, Shuying Huang, Ravin Hettiarachchi, Jiun-Lih Lin, Paul S. Thomas & Qi Zhang. (2013) Exhaled breath condensate: a comprehensive update. Clinical Chemistry and Laboratory Medicine 51:7.
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Philippe Rosias. (2012) Methodological aspects of exhaled breath condensate collection and analysis. Journal of Breath Research 6:2, pages 027102.
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Teal S. Hallstrand. (2012) New insights into pathogenesis of exercise-induced bronchoconstriction. Current Opinion in Allergy & Clinical Immunology 12:1, pages 42-48.
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