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Lung Deposition Analyses of Inhaled Toxic Aerosols in Conventional and Less Harmful Cigarette Smoke: A Review

机译:常规和危害较小的卷烟烟雾中吸入有毒气溶胶的肺沉积分析:综述

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Inhaled toxic aerosols of conventional cigarette smoke may impact not only the health of smokers, but also those exposed to second-stream smoke, especially children. Thus, less harmful cigarettes (LHCs), also called potential reduced exposure products (PREPs), or modified risk tobacco products (MRTP) have been designed by tobacco manufacturers to focus on the reduction of the concentration of carcinogenic components and toxicants in tobacco. However, some studies have pointed out that the new cigarette products may be actually more harmful than the conventional ones due to variations in puffing or post-puffing behavior, different physical and chemical characteristics of inhaled toxic aerosols, and longer exposure conditions. In order to understand the toxicological impact of tobacco smoke, it is essential for scientists, engineers and manufacturers to develop experiments, clinical investigations, and predictive numerical models for tracking the intake and deposition of toxicants of both LHCs and conventional cigarettes. Furthermore, to link inhaled toxicants to lung and other diseases, it is necessary to determine the physical mechanisms and parameters that have significant impacts on droplet/vapor transport and deposition. Complex mechanisms include droplet coagulation, hygroscopic growth, condensation and evaporation, vapor formation and changes in composition. Of interest are also different puffing behavior, smoke inlet conditions, subject geometries, and mass transfer of deposited material into systemic regions. This review article is intended to serve as an overview of contributions mainly published between 2009 and 2013, focusing on the potential health risks of toxicants in cigarette smoke, progress made in different approaches of impact analyses for inhaled toxic aerosols, as well as challenges and future directions.
机译:吸入常规香烟烟雾中的有毒气溶胶不仅会影响吸烟者的健康,还会影响暴露在第二流烟雾中的人,尤其是儿童。因此,烟草制造商已设计出危害较小的卷烟(LHC),也称为潜在减少接触的产品(PREP)或风险降低的烟草产品(MRTP),着重于降低烟草中致癌成分和有毒物质的浓度。但是,一些研究指出,由于膨化或膨化后行为的变化,吸入的有毒气雾剂的物理和化学特性不同以及暴露条件的延长,新的卷烟产品实际上比传统的卷烟更具危害性。为了了解烟草烟雾的毒理学影响,对于科学家,工程师和制造商来说,开发实验,临床研究和预测性数值模型以追踪LHC和传统卷烟的有害物质摄入和沉积至关重要。此外,要将吸入的有毒物质与肺部疾病和其他疾病联系起来,有必要确定对液滴/蒸气的运输和沉积有重大影响的物理机制和参数。复杂的机制包括液滴凝结,吸湿性生长,冷凝和蒸发,蒸气形成和组成变化。令人感兴趣的还有不同的抽吸行为,烟雾入口条件,对象的几何形状以及沉积材料向全身区域的质量转移。这篇综述文章旨在概述主要发表于2009年至2013年之间的文稿,重点介绍卷烟烟雾中有毒物质的潜在健康风险,吸入有毒气溶胶的影响分析的不同方法所取得的进展以及挑战和未来指示。

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