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Pediatric Asthma

Epithelial Apoptosis and Loss in Airways of Children with Asthma

, M.D., , M.D., , M.D., , Ph.D. & , Ph.D.
Pages 358-365 | Published online: 19 Apr 2011

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Lu Liu, Ling Zhou, Ling-Ling Wang, Peng-Dou Zheng, Feng-Qin Zhang, Zhen-Yu Mao, Huo-Jun Zhang & Hui-Guo Liu. (2023) Programmed Cell Death in Asthma: Apoptosis, Autophagy, Pyroptosis, Ferroptosis, and Necroptosis. Journal of Inflammation Research 16, pages 2727-2754.
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Chitra Joseph & Amanda L Tatler. (2022) Pathobiology of Airway Remodeling in Asthma: The Emerging Role of Integrins. Journal of Asthma and Allergy 15, pages 595-610.
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Qin Qiu, Weizhen Zhang, Kangdi Liu, Fangfang Huang, Jiating Su, Liyan Deng, Jiake He, Qianwen Lin & Lianxiang Luo. (2023) Schisandrin A ameliorates airway inflammation in model of asthma by attenuating Th2 response. European Journal of Pharmacology 953, pages 175850.
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Kazumi Kasakura, Yu Kawakami, Alain Jacquet & Toshiaki Kawakami. (2022) Histamine-Releasing Factor Is a Novel Alarmin Induced by House Dust Mite Allergen, Cytokines, and Cell Death. The Journal of Immunology 209:10, pages 1851-1859.
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Jinghai Tang, Jilong Liu & Xuehua Zhang. (2022) The Role of Osthole on TGF-β-Induced Lung Epithelium Apoptosis Injury and Epithelial-Mesenchymal Transition-Mediated Airway Remodeling in Pediatric Asthma. Journal of Healthcare Engineering 2022, pages 1-11.
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Nikos Oikonomou, Martjin J. Schuijs, Antonis Chatzigiagkos, Ariadne Androulidaki, Vassilis Aidinis, Hamida Hammad, Bart N. Lambrecht & Manolis Pasparakis. (2021) Airway epithelial cell necroptosis contributes to asthma exacerbation in a mouse model of house dust mite-induced allergic inflammation. Mucosal Immunology 14:5, pages 1160-1171.
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Jiapeng Hu, Jia Wang, Chunlu Li & Yunxiao Shang. (2021) Fructose‐1,6‐bisphosphatase aggravates oxidative stress‐induced apoptosis in asthma by suppressing the Nrf2 pathway. Journal of Cellular and Molecular Medicine 25:11, pages 5001-5014.
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Briana N. James, Clement Oyeniran, Jamie L. Sturgill, Jason Newton, Rebecca K. Martin, Erhard Bieberich, Cynthia Weigel, Melissa A. Maczis, Elisa N.D. Palladino, Joseph C. Lownik, John B. Trudeau, Joan M. Cook-Mills, Sally Wenzel, Sheldon Milstien & Sarah Spiegel. (2021) Ceramide in apoptosis and oxidative stress in allergic inflammation and asthma. Journal of Allergy and Clinical Immunology 147:5, pages 1936-1948.e9.
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Peiyan Zheng, Chen Huang, Dongliang Leng, Baoqing Sun & Xiaohua Douglas Zhang. (2020) Transcriptome analysis of peripheral whole blood identifies crucial lncRNAs implicated in childhood asthma. BMC Medical Genomics 13:1.
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Xiuyun Lv, Lihong Wang & Tianji Zhu. (2020) MiR-20a-5p suppressed TGF-β1-triggered apoptosis of human bronchial epithelial BEAS-2B cells by targeting STAT3. Molecular and Cellular Probes 50, pages 101499.
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Ning Zhang, Hong-tao Lu, Rong-jia Zhang & Xue-jun Sun. (2019) Protective effects of methane-rich saline on mice with allergic asthma by inhibiting inflammatory response, oxidative stress and apoptosis甲烷生理盐水通过抗氧化、 抗炎症和抗凋亡发挥对哮喘小鼠的保护作用. Journal of Zhejiang University-SCIENCE B 20:10, pages 828-837.
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Matteo Bonato, Mariaenrica Tiné, Erica Bazzan, Davide Biondini, Marina Saetta & Simonetta Baraldo. (2019) Early Airway Pathological Changes in Children: New Insights into the Natural History of Wheezing. Journal of Clinical Medicine 8:8, pages 1180.
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Xinrong Sun & Wanggang Zhang. (2019) Silencing of Gal-7 inhibits TGF-β1-induced apoptosis of human airway epithelial cells through JNK signaling pathway. Experimental Cell Research 375:2, pages 100-105.
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V. Jain, S. Raina, A. P. Gheware, R. Singh, R. Rehman, V. Negi, T. Murray Stewart, U. Mabalirajan, A. K. Mishra, R. A. CaseroJr.Jr., A. Agrawal & B. Ghosh. (2018) Reduction in polyamine catabolism leads to spermine‐mediated airway epithelial injury and induces asthma features. Allergy 73:10, pages 2033-2045.
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Vaibhav Jain. (2018) Role of Polyamines in Asthma Pathophysiology. Medical Sciences 6:1, pages 4.
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Chau-Chyun Sheu, Ming-Ju Tsai, Feng-Wei Chen, Kuo-Feng Chang, Wei-An Chang, Inn-Wen Chong, Po-Lin Kuo & Ya-Ling Hsu. (2017) Identification of novel genetic regulations associated with airway epithelial homeostasis using next-generation sequencing data and bioinformatics approaches. Oncotarget 8:47, pages 82674-82688.
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Tze Khee Chan, W. S. Daniel Tan, Hong Yong Peh & W. S. Fred Wong. (2017) Aeroallergens Induce Reactive Oxygen Species Production and DNA Damage and Dampen Antioxidant Responses in Bronchial Epithelial Cells. The Journal of Immunology 199:1, pages 39-47.
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Swapna Aravind Gudipaty & Jody Rosenblatt. (2017) Epithelial cell extrusion: Pathways and pathologies. Seminars in Cell & Developmental Biology 67, pages 132-140.
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S. Işık, M. Karaman, S. Çilaker Micili, Ş. Çağlayan-Sözmen, H. Alper Bağrıyanık, Z. Arıkan-Ayyıldız, N. Uzuner & Ö. Karaman. (2017) Beneficial effects of ursodeoxycholic acid via inhibition of airway remodelling, apoptosis of airway epithelial cells, and Th2 immune response in murine model of chronic asthma. Allergologia et Immunopathologia 45:4, pages 339-349.
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Robert P. Schleimer & Sergejs Berdnikovs. (2017) Etiology of epithelial barrier dysfunction in patients with type 2 inflammatory diseases. Journal of Allergy and Clinical Immunology 139:6, pages 1752-1761.
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Xiaolin Diao, Juan Wang, Hong Zhu & Bei He. (2016) Overexpression of programmed cell death 5 in a mouse model of ovalbumin-induced allergic asthma. BMC Pulmonary Medicine 16:1.
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Emanuela Turillazzi, Stefania Bello & Vittorio Fineschi. 2014. Handbook of Forensic Medicine. Handbook of Forensic Medicine 597 629 .
Patrizia SaccucciAlberto VerrottiCosimo GianniniMarcello VeriniFrancesco ChiarelliAnna NeriAndrea Magrini. (2014) p53 Codon 72 Genetic Polymorphism in Asthmatic Children: Evidence of Interaction With Acid Phosphatase Locus 1. Allergy, Asthma & Immunology Research 6:3, pages 252.
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Stephanie Tortorella, Simon G. Royce & Tom C. Karagiannis. 2014. Molecular mechanisms and physiology of disease. Molecular mechanisms and physiology of disease 219 245 .
Rachid Berair, Ruth Saunders & Christopher E Brightling. (2013) Origins of increased airway smooth muscle mass in asthma. BMC Medicine 11:1.
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Eugene Roscioli, Rhys Hamon, Richard E. Ruffin, Susan Lester & Peter Zalewski. (2013) Cellular inhibitor of apoptosis-2 is a critical regulator of apoptosis in airway epithelial cells treated with asthma-related inflammatory cytokines. Physiological Reports 1:5.
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S. Hodge & P. N. Reynolds. (2013) Regarding comments by Persson et al. (Airway, apoptosis, and asthma) to J. L. Simpson, P. G. Gibson, I. A. Yang, J. Upham, A. James, P. N. Reynolds, S. Hodge and AMAZES Study Research. Impaired macrophage phagocytosis in noneosinophilic asthma. Clin Exp A. Clinical & Experimental Allergy 43:9, pages 1086-1088.
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George T. Eisenhoffer & Jody Rosenblatt. (2013) Bringing balance by force: live cell extrusion controls epithelial cell numbers. Trends in Cell Biology 23:4, pages 185-192.
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Eugene Roscioli, Rhys Hamon, Susan Lester, Chiara Murgia, Janet Grant & Peter Zalewski. (2013) Zinc-rich inhibitor of apoptosis proteins (IAPs) as regulatory factors in the epithelium of normal and inflamed airways. BioMetals 26:2, pages 205-227.
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Steven R. White. (2011) Apoptosis and the Airway Epithelium. Journal of Allergy 2011, pages 1-21.
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