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烟雾吸入性急性肺损伤的临床前和临床研究:发病机制和创新治疗的最新进展。

Preclinical and clinical studies of smoke-inhalation-induced acute lung injury: update on both pathogenesis and innovative therapy.

机构信息

Institute of Lung and Molecular Therapy, Xinxiang Medical University, Xinxiang Henan, China.

Department of Cellular and Molecular Biology, University of Texas Health Science Center at Tyler, Tyler, TX, USA.

出版信息

Ther Adv Respir Dis. 2019 Jan-Dec;13:1753466619847901. doi: 10.1177/1753466619847901.

Abstract

Smoke-inhalation-induced acute lung injury (SI-ALI) is a leading cause of morbidity and mortality in victims of fire tragedies. SI-ALI contributes to an estimated 30% of burn-caused patient deaths, and recently, more attention has been paid to the specific interventions for this devastating respiratory illness. In the last decade, much progress has been made in the understanding of SI-ALI patho-mechanisms and in the development of new therapeutic strategies in both preclinical and clinical studies. This article reviews the recent progress in the treatment of SI-ALI, based on pathophysiology, thermal damage, airway obstruction, the nuclear-factor kappa-B signaling pathway, and oxidative stress. Preclinical therapeutic strategies include use of mesenchymal stem cells, hydrogen sulfide, peroxynitrite decomposition catalysts, and proton-pump inhibitors. Clinical interventions include high-frequency percussive ventilation, perfluorohexane, inhaled anticoagulants, and nebulized epinephrine. The animal model, dose, clinical application, and pharmacology of these medications are summarized. Future directions and further needs for developing innovative therapies are discussed.

摘要

烟雾吸入性急性肺损伤(SI-ALI)是火灾事故受害者发病率和死亡率的主要原因。SI-ALI 导致约 30%的烧伤患者死亡,最近,人们越来越关注这种破坏性呼吸疾病的具体干预措施。在过去的十年中,人们在理解 SI-ALI 的病理机制以及在临床前和临床研究中开发新的治疗策略方面取得了很大进展。本文基于病理生理学、热损伤、气道阻塞、核因子 kappa-B 信号通路和氧化应激,综述了 SI-ALI 的治疗新进展。临床干预措施包括使用间充质干细胞、硫化氢、过氧亚硝酸盐分解催化剂和质子泵抑制剂。总结了这些药物的动物模型、剂量、临床应用和药理学。讨论了未来的发展方向和对创新疗法的进一步需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db14/6515845/e96abfdd7a23/10.1177_1753466619847901-fig1.jpg

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