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电子液体体外系统毒理学评估框架。

A framework for in vitro systems toxicology assessment of e-liquids.

作者信息

Iskandar Anita R, Gonzalez-Suarez Ignacio, Majeed Shoaib, Marescotti Diego, Sewer Alain, Xiang Yang, Leroy Patrice, Guedj Emmanuel, Mathis Carole, Schaller Jean-Pierre, Vanscheeuwijck Patrick, Frentzel Stefan, Martin Florian, Ivanov Nikolai V, Peitsch Manuel C, Hoeng Julia

机构信息

a Philip Morris International R&D , Neuchâtel , Switzerland.

出版信息

Toxicol Mech Methods. 2016 Jul;26(6):389-413. doi: 10.3109/15376516.2016.1170251. Epub 2016 Apr 26.

Abstract

Various electronic nicotine delivery systems (ENDS), of which electronic cigarettes (e-cigs) are the most recognized prototype, have been quickly gaining ground on conventional cigarettes because they are perceived as less harmful. Research assessing the potential effects of ENDS exposure in humans is currently limited and inconclusive. New products are emerging with numerous variations in designs and performance parameters within and across brands. Acknowledging these challenges, we present here a proposed framework for an in vitro systems toxicology assessment of e-liquids and their aerosols, intended to complement the battery of assays for standard toxicity assessments. The proposed framework utilizes high-throughput toxicity assessments of e-liquids and their aerosols, in which the device-to-device variability is minimized, and a systems-level investigation of the cellular mechanisms of toxicity is an integral part. An analytical chemistry investigation is also included as a part of the framework to provide accurate and reliable chemistry data solidifying the toxicological assessment. In its simplest form, the framework comprises of three main layers: (1) high-throughput toxicity screening of e-liquids using primary human cell culture systems; (2) toxicity-related mechanistic assessment of selected e-liquids, and (3) toxicity-related mechanistic assessment of their aerosols using organotypic air-liquid interface airway culture systems. A systems toxicology assessment approach is leveraged to enable in-depth analyses of the toxicity-related cellular mechanisms of e-liquids and their aerosols. We present example use cases to demonstrate the suitability of the framework for a robust in vitro assessment of e-liquids and their aerosols.

摘要

各种电子尼古丁输送系统(ENDS),其中电子烟(e-cigs)是最广为人知的原型,因其被认为危害较小,正迅速在传统香烟市场中占据一席之地。目前,评估ENDS暴露对人体潜在影响的研究有限且尚无定论。新的产品不断涌现,不同品牌内部以及不同品牌之间在设计和性能参数上存在众多差异。认识到这些挑战,我们在此提出一个针对电子烟液及其气溶胶的体外系统毒理学评估框架,旨在补充标准毒性评估的一系列检测方法。所提出的框架利用对电子烟液及其气溶胶的高通量毒性评估,其中设备间的变异性被最小化,并且对毒性细胞机制的系统层面研究是不可或缺的一部分。作为框架的一部分,还包括一项分析化学研究,以提供准确可靠的化学数据,巩固毒理学评估。最简单的形式下,该框架由三个主要层次组成:(1)使用原代人类细胞培养系统对电子烟液进行高通量毒性筛选;(2)对选定的电子烟液进行与毒性相关的机制评估;(3)使用器官型气液界面气道培养系统对其气溶胶进行与毒性相关的机制评估。利用系统毒理学评估方法对电子烟液及其气溶胶与毒性相关的细胞机制进行深入分析。我们展示了示例用例,以证明该框架适用于对电子烟液及其气溶胶进行强有力的体外评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da50/5309872/ea78ff38946b/itxm_a_1170251_f0001_c.jpg

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