E-cigarette vaping associated acute lung injury (EVALI): state of science and future research needs.

IF 5.7 2区 医学 Q1 TOXICOLOGY
Critical Reviews in Toxicology Pub Date : 2022-03-01 Epub Date: 2022-07-13 DOI:10.1080/10408444.2022.2082918
Antonella Marrocco, Dilpreet Singh, David C Christiani, Philip Demokritou
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引用次数: 0

Abstract

"E-Cigarette (e-cig) Vaping-Associated Acute Lung Injury" (EVALI) has been linked to vitamin-E-acetate (VEA) and Δ-9-tetrahydrocannabinol (THC), due to their presence in patients' e-cigs and biological samples. Lacking standardized methodologies for patients' data collection and comprehensive physicochemical/toxicological studies using real-world-vapor exposures, very little data are available, thus the underlying pathophysiological mechanism of EVALI is still unknown. This review aims to provide a comprehensive and critical appraisal of existing literature on clinical/epidemiological features and physicochemical-toxicological characterization of vaping emissions associated with EVALI. The literature review of 161 medical case reports revealed that the predominant demographic pattern was healthy white male, adolescent, or young adult, vaping illicit/informal THC-containing e-cigs. The main histopathologic pattern consisted of diffuse alveolar damage with bilateral ground-glass-opacities at chest radiograph/CT, and increased number of macrophages or neutrophils and foamy-macrophages in the bronchoalveolar lavage. The chemical analysis of THC/VEA e-cig vapors showed a chemical difference between THC/VEA and the single THC or VEA. The chemical characterization of vapors from counterfeit THC-based e-cigs or in-house-prepared e-liquids using either cannabidiol (CBD), VEA, or medium-chain triglycerides (MCT), identified many toxicants, such as carbonyls, volatile organic compounds, terpenes, silicon compounds, hydrocarbons, heavy metals, pesticides and various industrial/manufacturing/automotive-related chemicals. There is very scarce published toxicological data on emissions from THC/VEA e-liquids. However, CBD, MCT, and VEA emissions exert varying degrees of cytotoxicity, inflammation, and lung damage, depending on puffing topography and cell line. Major knowledge gaps were identified, including the need for more systematic-standardized epidemiological surveys, comprehensive physicochemical characterization of real-world e-cig emissions, and mechanistic studies linking emission properties to specific toxicological outcomes.

Abstract Image

Abstract Image

电子烟相关急性肺损伤(EVALI):科学现状和未来研究需求。
“电子烟与急性肺损伤相关”(EVALI)与维生素E醋酸酯(VEA)和Δ-9-四氢大麻酚(THC)有关,因为它们存在于患者的电子烟和生物样本中。由于缺乏患者数据收集的标准化方法和使用真实世界蒸汽暴露的全面物理化学/毒理学研究,可用的数据很少,因此EVALI的潜在病理生理机制仍然未知。这篇综述旨在对与EVALI相关的电子烟排放的临床/流行病学特征和理化毒理学特征的现有文献进行全面和批判性的评价。对161例医学病例报告的文献综述显示,主要的人口统计模式是健康的白人男性、青少年或年轻人,他们吸食非法/非正式的含有四氢大麻酚的电子烟。主要的组织病理学模式包括弥漫性肺泡损伤,胸部X线片/CT显示双侧磨玻璃影,支气管肺泡灌洗中巨噬细胞或中性粒细胞和泡沫巨噬细胞数量增加。对THC/VEA电子烟蒸汽的化学分析显示,THC/VEA与单一THC或VEA之间存在化学差异。使用大麻二酚(CBD)、VEA或中链甘油三酯(MCT)对假冒的基于四氢大麻酚的电子烟或自制电子液体的蒸汽进行化学表征,确定了许多有毒物质,如羰基、挥发性有机化合物、萜烯、硅化合物、碳氢化合物、重金属、杀虫剂和各种工业/制造业/汽车相关化学品。关于四氢大麻酚/维甲酸电子液体的排放,目前公布的毒理学数据非常少。然而,CBD、MCT和VEA的释放会产生不同程度的细胞毒性、炎症和肺损伤,这取决于肿胀地形和细胞系。确定了主要的知识差距,包括需要更系统的标准化流行病学调查,对真实世界的电子烟排放进行全面的物理化学表征,以及将排放特性与特定毒理学结果联系起来的机制研究。
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来源期刊
CiteScore
9.50
自引率
1.70%
发文量
29
期刊介绍: Critical Reviews in Toxicology provides up-to-date, objective analyses of topics related to the mechanisms of action, responses, and assessment of health risks due to toxicant exposure. The journal publishes critical, comprehensive reviews of research findings in toxicology and the application of toxicological information in assessing human health hazards and risks. Toxicants of concern include commodity and specialty chemicals such as formaldehyde, acrylonitrile, and pesticides; pharmaceutical agents of all types; consumer products such as macronutrients and food additives; environmental agents such as ambient ozone; and occupational exposures such as asbestos and benzene.
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