Department of Preventive Medicine, Graduate School, Kyung Hee University, Seoul, Republic of Korea.
Department of Occupational and Environmental Medicine, Kyung Hee University Hospital, Seoul, Republic of Korea.
BMC Public Health. 2022 Oct 14;22(1):1917. doi: 10.1186/s12889-022-14319-x.
Environmental exposure to benzene and toluene is a suspected risk factor for metabolic disorders among the general adult population. However, the effects of benzene and toluene on blood lipid profiles remain unclear. In this study, we investigated the association between urinary blood lipid profiles and metabolites of benzene and toluene in Korean adults.
We analyzed the data of 3,423 adults from the Korean National Environmental Health Survey Cycle 3 (2015-2017). We used urinary trans,trans-muconic acid (ttMA) as a biomarker of benzene exposure, and urinary benzylmercapturic acid (BMA) as an indicator of toluene exposure. Multivariate logistic regression analyses were performed to explore the association between blood lipid profiles and urinary metabolites of benzene and toluene. Additionally, we examined the linear relationship and urinary metabolites of benzene and toluene between lipoprotein ratios using multivariate regression analyses.
After adjusting for covariates, the fourth quartile (Q4) of ttMA [odds ratio (OR) (95% confidence interval, CI = 1.599 (1.231, 2.077)] and Q3 of BMA [OR (95% CI) = 1.579 (1.129, 2.208)] were associated with an increased risk of hypertriglyceridemia. However, the Q4 of urinary ttMA [OR (95% CI) = 0.654 (0.446, 0.961)] and Q3 of urinary BMA [OR (95% CI) = 0.619 (0.430, 0.889)] decreased the risk of a high level of low-density lipoprotein cholesterol (LDL-C). Higher urinary ttMA levels were positively associated with the ratio of triglycerides to high-density lipoproteins [Q4 compared to Q1: β = 0.11, 95% CI: (0.02, 0.20)]. Higher urinary metabolite levels were negatively associated with the ratio of low-density lipoprotein to high-density lipoprotein [Q4 of ttMA compared to reference: β = -0.06, 95% CI: (-0.11, -0.01); Q4 of BMA compared to reference: β = -0.13, 95% CI: (-0.19, -0.08)].
Benzene and toluene metabolites were significantly and positively associated with hypertriglyceridemia. However, urinary ttMA and BMA levels were negatively associated with high LDL-C levels. These findings suggest that environmental exposure to benzene and toluene disrupts lipid metabolism in humans.
苯和甲苯的环境暴露被认为是普通成年人群代谢紊乱的一个潜在危险因素。然而,苯和甲苯对血脂谱的影响仍不清楚。在这项研究中,我们调查了韩国成年人尿液中血脂谱与苯和甲苯代谢物之间的关系。
我们分析了韩国国家环境健康调查周期 3(2015-2017 年)中 3423 名成年人的数据。我们使用尿液中转,反-粘糠酸(ttMA)作为苯暴露的生物标志物,使用尿液苄基硫醚尿酸(BMA)作为甲苯暴露的指示物。使用多变量逻辑回归分析来探讨血脂谱与苯和甲苯尿液代谢物之间的关系。此外,我们使用多元回归分析检查了脂蛋白比值与苯和甲苯尿液代谢物之间的线性关系。
在调整了混杂因素后,ttMA 的第四四分位数(Q4)[比值比(OR)(95%置信区间,CI=1.599(1.231, 2.077)]和 BMA 的第三四分位数(OR(95%CI)=1.579(1.129, 2.208)]与高甘油三酯血症的风险增加相关。然而,ttMA 的第四四分位数[OR(95%CI)=0.654(0.446, 0.961)]和 BMA 的第三四分位数[OR(95%CI)=0.619(0.430, 0.889)]降低了 LDL-C 水平升高的风险。较高的尿液 ttMA 水平与甘油三酯与高密度脂蛋白的比值呈正相关[与 Q1 相比,Q4:β=0.11,95%CI:(0.02, 0.20)]。较高的尿液代谢物水平与 LDL 与高密度脂蛋白的比值呈负相关[与参考相比,ttMA 的 Q4:β=-0.06,95%CI:(-0.11, -0.01);BMA 的 Q4:β=-0.13,95%CI:(-0.19, -0.08)]。
苯和甲苯的代谢物与高甘油三酯血症显著正相关。然而,尿液 ttMA 和 BMA 水平与高 LDL-C 水平呈负相关。这些发现表明,苯和甲苯的环境暴露会破坏人类的脂质代谢。