首页> 外文期刊>Substance Abuse: Research and Treatment >Vaping Synthetic Cannabinoids: A Novel Preclinical Model of E-Cigarette Use in Mice:
【24h】

Vaping Synthetic Cannabinoids: A Novel Preclinical Model of E-Cigarette Use in Mice:

机译:雾化合成大麻素:小鼠电子烟的新型临床前模型:

获取原文
       

摘要

Smoking is the most common route of administration for cannabis; however, vaping cannabis extracts and synthetic cannabinoids (“fake marijuana”) in electronic cigarette devices has become increasingly popular. Yet, most animal models used to investigate biological mechanisms underlying cannabis use employ injection as the route of administration. This study evaluated a novel e-cigarette device that delivers aerosolized cannabinoids to mice. The effects of aerosolized and injected synthetic cannabinoids (CP 55,940, AB-CHMINACA, XLR-11, and JWH-018) in mice were compared in a battery of bioassays in which psychoactive cannabinoids produce characteristic effects. The most potent cannabinoids (CP 55,940 and AB-CHMINACA) produced the full cannabinoid profile (ie, hypothermia, hypolocomotion, and analgesia), regardless of the route of administration. In contrast, aerosolized JWH-018 and XLR-11 did not produce the full profile of cannabimimetic effects. Results of time course analysis for hypothermia showed that aerosol exposure to CP 55,940 and AB-CHMINACA produced faster onset of effects and shorter duration of action than injection. The ability to administer cannabinoids to rodents using the most common route of administration among humans provides a method for collecting preclinical data with enhanced translational relevance.
机译:吸烟是大麻的最常见给药途径。但是,在电子烟设备中使用雾化大麻提取物和合成大麻素(“假大麻”)已变得越来越流行。但是,大多数用于研究大麻使用的生物学机制的动物模型都采用注射作为给药途径。这项研究评估了一种新型的电子烟设备,该设备可以将雾化的大麻素输送给小鼠。在一系列生物测定中比较了雾化和注射的合成大麻素(CP 55,940,AB-CHMINACA,XLR-11和JWH-018)对小鼠的影响,其中精神活性大麻素具有特征性作用。最有效的大麻素(CP 55,940和AB-CHMINACA)产生完整的大麻素谱(即体温过低,运动减退和镇痛),而与给药途径无关。相反,雾化的JWH-018和XLR-11并未产生大麻模拟作用的全部特征。低温的时程分析结果表明,与注射相比,暴露于CP 55,940和AB-CHMINACA的气雾剂起效更快,作用时间更短。使用人类中最常见的给药途径将大麻素给予啮齿动物的能力提供了一种收集临床前数据的方法,该方法具有增强的翻译相关性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号