Santalla Manuela, Gómez Ivana M, Valverde Carlos A, Ferrero Paola
Departamento de Ciencias Básicas y Experimentales, Universidad Nacional del Noroeste (UNNOBA), Pergamino, Argentina.
Centro de Investigaciones Cardiovasculares "Dr. Horacio E. Cingolani", Facultad de Ciencias Médicas-UNLP CONICET, La Plata, Argentina.
Bio Protoc. 2021 Dec 5;11(23):e4244. doi: 10.21769/BioProtoc.4244.
has been used to test drugs of abuse, substances with potential benefits for medical purposes, as well as contaminants and hazardous volatile compounds. This model has also been used for the characterization of behavioral changes, physiopathological consequences, and subcellular mechanisms of the use of cocaine, methamphetamines, ethanol, nicotine, cannabinoids, toluene, and other airborne volatile organic compounds. When testing these substances, routes of administration are important to define. Admixing the test compounds with water or food is one suitable option in many cases, but the inhalation route is especially suitable when the administration of one or more volatile compounds is desired. One advantage of the administration of substances via the inhalation route is its rapid exchange and distribution throughout the cuticle and the tracheal system. In addition, this route allows treating a large group of individuals simultaneously. Moreover, the inhalation route is frequently used to administer different drugs to humans. A good model system shares physiology and molecular pathways with humans, and possesses almost 75% homologous genes associated with human diseases. Methodologies to deliver the abovementioned substances usually include customized devices. Herein, we focus on the development of a low-cost customized device useful to deliver smoke or vaporizable compounds to . This approach might be applied for acute or chronic exposure to vaporized substances. In particular, our device was utilized for testing cigarette smoke and vaporized cannabis extract on cardiac performance of adult individuals during chronic treatment. We are describing how to set up this low-cost portable device, useful for research and/or educational assays, taking advantage of the amenability of to test different compounds in relatively short periods, and especially including a large number of individuals at the same time. Graphic abstract: Custom-made device useful for inhalation pathway assays in .
已被用于测试滥用药物、具有潜在医学益处的物质,以及污染物和有害挥发性化合物。该模型还被用于表征可卡因、甲基苯丙胺、乙醇、尼古丁、大麻素、甲苯和其他空气中挥发性有机化合物使用的行为变化、生理病理后果和亚细胞机制。在测试这些物质时,给药途径的定义很重要。在许多情况下,将测试化合物与水或食物混合是一种合适的选择,但当需要给药一种或多种挥发性化合物时,吸入途径特别合适。通过吸入途径给药物质的一个优点是其在整个角质层和气管系统中的快速交换和分布。此外,这种途径允许同时治疗一大群个体。而且,吸入途径经常用于给人类施用不同的药物。一个好的模型系统与人类共享生理学和分子途径,并拥有与人类疾病相关的近75%的同源基因。递送上述物质的方法通常包括定制设备。在此,我们专注于开发一种低成本的定制设备,用于将烟雾或可汽化化合物递送至…… 这种方法可应用于急性或慢性暴露于汽化物质。特别是,我们的设备用于在慢性治疗期间测试香烟烟雾和汽化大麻提取物对成年个体心脏性能的影响。我们正在描述如何设置这种低成本的便携式设备,该设备可用于研究和/或教育试验,利用……在相对短的时间内测试不同化合物的便利性,特别是同时包括大量个体。图形摘要:用于……吸入途径试验的定制设备