Evidence map›Paper›PMID 40887642›Full record

ArticleRespiratory research2025

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.

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

Abstract read
In one paragraph

Article in Respiratory research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

8 authors.

Xuanrong BaoCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.
Hanbing HuCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.
Yu DunCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.
Yuedong TangCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.
Fuli LiuCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China.
Jian ZhouShanghai Key Laboratory of Lung Inflammation and Injury, Shanghai, 200032, China.
Weichun MoCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China. 18930815698@163.com.ORCID http://orcid.org/0000-0001-5565-160X
Jie ShenCenter of Emergency and Critical Medicine, Jinshan Hospital of Fudan University, 1508 Longhang Rd, Shanghai, 201508, China. jieshen1508@gmail.com.ORCID https://orcid.org/0009-0009-3996-5145

Funding

Jinshan Hospital of Fudan University JSYY-ZDSYS-2024National Natural Science Foundation of China 82272243Science and Technology Commission of Shanghai Municipality 22Y11900800
6 · The paper itself

Abstract

backgroundE-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.

methodsWe 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.

resultsOur 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.

conclusionThis 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.

Indexed as

AcetatesInhalation ExposureLung InjuryMacrophages, AlveolarVapingVitamin EAerosolsAlveolar Epithelial CellsAnimalsCell LineCytokinesCytotoxicity, ImmunologicDisease Models, AnimalElectronic Nicotine Delivery SystemsHumansMaleAcetatesAerosolsCytokinesVitamin EAcute lung injuryEVALIMacrophageNose-onlyVitamin e acetate

Identifiers

PMID40887642
PMCPMC12400611

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.