Suppr超能文献

通过仅经鼻暴露于雾化维生素E醋酸酯诱导的电子烟或雾化产品使用相关肺损伤(EVALI)小鼠模型及相关巨噬细胞功能障碍。

A mouse model of E-cigarette or vaping product use-associated lung injury (EVALI) induced by nose-only exposure to aerosolized vitamin E acetate and associated macrophage dysfunction.

作者信息

Bao Xuanrong, Hu Hanbing, Dun Yu, Tang Yuedong, Liu Fuli, Zhou Jian, Mo Weichun, Shen Jie

机构信息

Center of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.

Research Center for Chemical Injury, Emergency and Critical Medicine of Fudan University, Shanghai, 201508, China.

出版信息

Respir Res. 2025 Aug 31;26(1):263. doi: 10.1186/s12931-025-03343-1.

Abstract

BACKGROUND

E-cigarette or vaping product use-associated Lung Injury (EVALI) has become a public health concern since 2019, with vitamin E acetate (VEA) identified as a potential causative agent. While previous studies have used whole-body VEA aerosol exposure or intratracheal instillation models, these approaches may introduce confounding exposure routes or do not fully reflect real-world vaping conditions. To better understand VEA-induced EVALI, there remains a need for an animal model that isolates airway exposure and closely mimics human vaping behaviour.

METHODS

We utilized a nose-only exposure system to develop a mouse model of EVALI, with VEA aerosol generated by a commercially available vaping device. Puffs were generated at a volume of 55 mL over 3 s, delivered every 30 s for 1 h per day, up to 6 consecutive days. Lung injury was assessed through histopathological analysis, and airway function was measured via invasive airway function test. Ultrastructural changes in mouse alveoli were analyzed with transmission electron microscopy. Alveolar macrophages were assessed for pro-inflammatory polarization and functional impairment. Potential pathogenic mechanisms were explored with RNA-seq analysis.

RESULTS

Our findings revealed acute lung injuries, characterized by pulmonary edema and typical histopathological findings. Additionally, we observed changes in airway functions with altered respiratory patterns and decreased lung dynamic compliance. Transmission electron microscopy further revealed type II pneumocyte hypertrophy, type I pneumocyte swelling, and prolonged activation of alveolar macrophages with electron-dense phagocytic contents. We also demonstrated macrophage dysfunction with sustained pro-inflammatory polarization and impaired efferocytosis function. The persistent inflammation of the lung was also characterized by the increased level of pro-inflammatory cytokines in the bronchoalveolar lavage fluid, especially IL-6. RNA-seq analysis highlighted pathways related to T cell activation, cytokine signaling, and leukocyte migration.

CONCLUSION

This study established a mouse model using a nose-only VEA aerosol exposure system to examine the respiratory effects of VEA in EVALI. Our results revealed that VEA inhalation triggered acute lung injury, accompanied by early signs of airway dysfunction. The findings support the hypothesis that VEA drives EVALI pathogenesis through both direct cytotoxic effects and macrophage-mediated inflammation. Our findings offer new insights into the mechanisms of EVALI and present a valuable model for future research.

摘要

背景

自2019年以来,电子烟或雾化产品使用相关肺损伤(EVALI)已成为一个公共卫生问题,维生素E醋酸酯(VEA)被确定为一种潜在致病因素。虽然先前的研究使用了全身VEA气雾剂暴露或气管内滴注模型,但这些方法可能会引入混杂的暴露途径,或者不能完全反映现实世界中的雾化情况。为了更好地理解VEA诱导的EVALI,仍然需要一种能够隔离气道暴露并密切模拟人类雾化行为的动物模型。

方法

我们利用仅经鼻暴露系统建立了EVALI小鼠模型,使用市售雾化装置产生VEA气雾剂。每次呼气量为55 mL,持续3秒,每30秒进行一次,每天1小时,连续进行6天。通过组织病理学分析评估肺损伤,并通过侵入性气道功能测试测量气道功能。用透射电子显微镜分析小鼠肺泡的超微结构变化。评估肺泡巨噬细胞的促炎极化和功能损伤。通过RNA测序分析探索潜在的致病机制。

结果

我们的研究结果显示了急性肺损伤,其特征为肺水肿和典型的组织病理学表现。此外,我们观察到气道功能的变化,呼吸模式改变,肺动态顺应性降低。透射电子显微镜进一步显示II型肺泡上皮细胞肥大、I型肺泡上皮细胞肿胀,以及肺泡巨噬细胞长期激活,吞噬内容物电子密度增加。我们还证明了巨噬细胞功能障碍,表现为持续的促炎极化和吞噬功能受损。肺的持续炎症还表现为支气管肺泡灌洗液中促炎细胞因子水平升高,尤其是白细胞介素-6。RNA测序分析突出了与T细胞激活、细胞因子信号传导和白细胞迁移相关的途径。

结论

本研究使用仅经鼻VEA气雾剂暴露系统建立了小鼠模型,以研究VEA在EVALI中的呼吸效应。我们的结果表明,吸入VEA会引发急性肺损伤,并伴有气道功能障碍的早期迹象。这些发现支持了这样的假设,即VEA通过直接细胞毒性作用和巨噬细胞介导的炎症驱动EVALI发病机制。我们的发现为EVALI的机制提供了新的见解,并为未来的研究提供了一个有价值的模型。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验