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Effect of cigarette design on biomarkers of exposure puffing topography and respiratory parameters

机译:卷烟设计对暴露膨化地形和呼吸参数生物标志物的影响

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摘要

Despite the lack of evidence, many reports exist which have implied that smokers inhale low-yield cigarette smoke more deeply than that of high-yield cigarettes. The objective of this study was to investigate the effect of short-term switching between smoker’s own brand and test cigarettes with different smoke yields on puffing topography, respiratory parameters and biomarkers of exposure. Participants were randomly assigned to smoke either a Test Cigarette-High Tar (TCH), for two days, and then switched to a Test Cigarette-Low Tar (TCL), for two days or the reverse order (n = 10 each sequence). Puffing topography (CReSS microdevice), respiratory parameters (inductive plethysmography) and biomarkers of exposure (BOE, urinary nicotine equivalents – NE and blood carboxyhemoglobin – COHb) were measured at baseline and on days 2 and 4. The average puffs per cigarette, puff volume and puff durations were statistically significantly lower, and inter-puff interval was significantly longer for the TCH compared to the TCL groups. Respiratory parameters were not statistically significantly different between the TCH and TCL groups. Post-baseline NE and COHb were statistically significantly lower in the TCL compared to the TCH groups. Under the conditions of this study, we found no indication of changes in respiratory parameters, particularly inhalation time and volume, between study participants smoking lower versus higher yield cigarettes. Likewise, the BOE provides no indication of deeper inhalation when smoking low- versus high-yield cigarettes. These findings are consistent with the published literature indicating smoking low-yield cigarettes does not increase the depth of inhalation.
机译:尽管缺乏证据,但有许多报告暗示吸烟者比高产率香烟更深地吸入低产率香烟。这项研究的目的是研究在吸烟者自己的品牌和具有不同烟量的测试卷烟之间进行短期转换对抽气形貌,呼吸参数和暴露生物标志物的影响。参与者被随机分配吸烟或测试香烟高焦油(TCH),两天,然后切换到测试香烟-低焦油(TCL),两天或以相反的顺序吸烟(每个序列n = 10)。在基线以及第2天和第4天测量了喘气的地形(CReSS微型设备),呼吸参数(感应体积描记法)和暴露的生物标志物(BOE,尿中的尼古丁当量– NE和血液中的羧基血红蛋白– COHb)。每支烟的平均抽吸量,抽吸量与TCL组相比,TCH的抽气和吹气时间显着降低,而抽气间隔时间明显更长。 TCH和TCL组之间的呼吸参数无统计学差异。与TCH组相比,TCL的基线后NE和COHb在统计学上显着降低。在这项研究的条件下,我们没有发现吸烟量较低和吸烟量较高的参与者之间呼吸参数特别是吸入时间和吸入量的变化。同样,当吸烟低产量香烟与高产量香烟时,京东方没有提供更深层吸入的迹象。这些发现与已公开的文献一致,该文献表明吸烟低产量香烟不会增加吸入深度。

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