健康志愿者受控暴露于稀释的 Petrodiesel 和生物柴油废气的急性心血管效应:一项交叉研究。

Acute cardiovascular effects of controlled exposure to dilute Petrodiesel and biodiesel exhaust in healthy volunteers: a crossover study.

机构信息

Department of Public Health and Clinical Medicine, Section of Medicine, Umeå University, Umeå, Sweden.

Department of Surgical Sciences, Uppsala University, Uppsala, Sweden.

出版信息

Part Fibre Toxicol. 2021 Jun 14;18(1):22. doi: 10.1186/s12989-021-00412-3.

Abstract

BACKGROUND

Air pollution derived from combustion is associated with considerable cardiorespiratory morbidity and mortality in addition to environmental effects. Replacing petrodiesel with biodiesel may have ecological benefits, but impacts on human health remain unquantified. The objective was to compare acute cardiovascular effects of blended and pure biodiesel exhaust exposure against known adverse effects of petrodiesel exhaust (PDE) exposure in human subjects. In two randomized controlled double-blind crossover studies, healthy volunteers were exposed to PDE or biodiesel exhaust for one hour. In study one, 16 subjects were exposed, on separate occasions, to PDE and 30% rapeseed methyl ester biodiesel blend (RME30) exhaust, aiming at PM 300 μg/m. In study two, 19 male subjects were separately exposed to PDE and exhaust from a 100% RME fuel (RME100) using similar engine load and exhaust dilution. Generated exhaust was analyzed for physicochemical composition and oxidative potential. Following exposure, vascular endothelial function was assessed using forearm venous occlusion plethysmography and ex vivo thrombus formation was assessed using a Badimon chamber model of acute arterial injury. Biomarkers of inflammation, platelet activation and fibrinolysis were measured in the blood.

RESULTS

In study 1, PDE and RME30 exposures were at comparable PM levels (314 ± 27 μg/m; (PM ± SD) and 309 ± 30 μg/m respectively), whereas in study 2, the PDE exposure concentrations remained similar (310 ± 34 μg/m), but RME100 levels were lower in PM (165 ± 16 μg/m) and PAHs, but higher in particle number concentration. Compared to PDE, PM from RME had less oxidative potential. Forearm infusion of the vasodilators acetylcholine, bradykinin, sodium nitroprusside and verapamil resulted in dose-dependent increases in blood flow after all exposures. Vasodilatation and ex vivo thrombus formation were similar following exposure to exhaust from petrodiesel and the two biodiesel formulations (RME30 and RME100). There were no significant differences in blood biomarkers or exhaled nitric oxide levels between exposures.

CONCLUSIONS

Despite differences in PM composition and particle reactivity, controlled exposure to biodiesel exhaust was associated with similar cardiovascular effects to PDE. We suggest that the potential adverse health effects of biodiesel fuel emissions should be taken into account when evaluating future fuel policies.

TRIAL REGISTRATION

ClinicalTrials.gov, NCT01337882 /NCT01883466. Date of first enrollment March 11, 2011, registered April 19, 2011, i.e. retrospectively registered.

摘要

背景

除了对环境的影响外,源自燃烧的空气污染还与相当多的心肺发病率和死亡率有关。用生物柴油替代石油柴油可能具有生态效益,但对人类健康的影响仍未量化。本研究的目的是比较混合生物柴油和纯生物柴油废气暴露对人体的急性心血管影响,以及已知的石油柴油废气(PDE)暴露的不良影响。在两项随机对照双盲交叉研究中,健康志愿者分别暴露于 PDE 或生物柴油废气中 1 小时。在研究 1 中,16 名受试者分别暴露于 PDE 和 30%菜籽油甲酯生物柴油混合物(RME30)废气中,目标是 PM 300μg/m。在研究 2 中,19 名男性受试者分别使用类似的发动机负荷和废气稀释,暴露于 100% RME 燃料(RME100)的废气中。产生的废气进行理化成分和氧化潜力分析。暴露后,采用前臂静脉闭塞容积描记法评估血管内皮功能,采用急性动脉损伤 Badimon 室模型评估体外血栓形成。测量血液中的炎症、血小板激活和纤溶生物标志物。

结果

在研究 1 中,PDE 和 RME30 暴露的 PM 水平相当(分别为 314±27μg/m和 309±30μg/m),而在研究 2 中,PDE 暴露浓度保持相似(310±34μg/m),但 RME100 的 PM 和 PAH 水平较低,而颗粒数浓度较高。与 PDE 相比,RME 的 PM 具有较低的氧化潜力。所有暴露后,血管扩张剂乙酰胆碱、缓激肽、硝普钠和维拉帕米的前臂输注均导致血流剂量依赖性增加。暴露于石油柴油和两种生物柴油制剂(RME30 和 RME100)的废气后,血管舒张和体外血栓形成相似。暴露后血液生物标志物或呼出的一氧化氮水平无显著差异。

结论

尽管 PM 组成和颗粒反应性存在差异,但生物柴油废气的受控暴露与 PDE 引起的类似心血管效应有关。我们建议,在评估未来燃料政策时,应考虑生物柴油燃料排放对健康的潜在不利影响。

试验注册

ClinicalTrials.gov,NCT01337882/NCT01883466。首次入组日期 2011 年 3 月 11 日,注册日期 2011 年 4 月 19 日,即回溯性注册。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/026b/8204543/0d8cf41a75da/12989_2021_412_Fig1_HTML.jpg

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