Hage Anthony N, Krause Will, Mathues Angela, Krasner Luke, Kasten Seth, Eliason Jonathan L, Ghosh Abhijit
Jobst Vascular Research Laboratory, University of Michigan Medical School;
Jobst Vascular Research Laboratory, University of Michigan Medical School.
J Vis Exp. 2017 May 24(123):55672. doi: 10.3791/55672.
Electronic cigarettes (E-cigarettes) are being widely used, and growing in popularity. It is estimated that more than 9 million adults use them regularly. The potential adverse health effects of electronic cigarette vapor (E-vapor) exposure are poorly defined. While several animal models of E-vapor exposure have been developed, few models expose rodents to clinically relevant quantities of nicotine and make direct comparisons to cigarette smoke within the same exposure system. Here, we present a method for constructing and operating an E-vapor chamber and cigarette smoke chamber. The chambers are constructed by outfitting anesthesia chambers with a computer controlled pumping system that delivers consistent amounts of E-vapor or cigarette smoke to rodents. Nicotine exposure is measured indirectly by quantifying pre and post-exposure serum cotinine levels. This exposure system can be modified to accommodate various types of E-cigarettes and tobacco cigarettes, and can be used to compare the effects of E-vapor and cigarette smoke in vivo.
电子烟正在被广泛使用,且越来越受欢迎。据估计,超过900万成年人经常使用电子烟。电子烟烟雾暴露对健康的潜在不良影响尚不明确。虽然已经开发了几种电子烟烟雾暴露的动物模型,但很少有模型让啮齿动物接触临床相关剂量的尼古丁,并在同一暴露系统中与香烟烟雾进行直接比较。在此,我们介绍一种构建和操作电子烟烟雾室和香烟烟雾室的方法。这些室通过为麻醉室配备计算机控制的抽吸系统来构建,该系统可向啮齿动物输送恒定数量的电子烟烟雾或香烟烟雾。通过量化暴露前后血清可替宁水平间接测量尼古丁暴露情况。该暴露系统可以进行修改,以适应各种类型的电子烟和烟草香烟,并可用于比较电子烟烟雾和香烟烟雾在体内的影响。