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STAT3 methylation in white blood cells as a novel sensitive biomarker for the toxic effect of low-dose benzene exposure

机译:白细胞中的STAT3甲基化是低剂量苯暴露的毒性作用的新型敏感生物标志物

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摘要

Alterations in DNA methylation patterns play an essential role in disease process and are associated with cancer risk. To explore the toxic effect and early sensitive biomarker of the health effects of low-dose benzene exposure (LDBE), and investigate the correlation between DNA methylation and the toxic effect of LDBE, a cross-sectional study was conducted in a sample of 571 workers; 312 workers who were exposed to a 1.82 ± 1.16 mg m–3 air benzene concentration were assigned to the LDBE group, while 259 non-known benzene exposure (NBE) workers were assigned to the control group, with an air benzene concentration of 0.06 ± 0.01 mg m–3. Routine blood indexes, alanine transaminase (ALT), oxidative stress parameters and signal transducer and activator of transcription 3 (STAT3) methylation were detected. Compared with the NBE population, the STAT3 methylation level (P = 0.001), Platelets (PLTs) (P = 0.002) and 8-isoprostane-PGFs (8-iso-PGF2a) (P = 0.001) manifested a significant reduction, while ALT (P = 0.002) and 8-hydroxy-2 deoxyguanosine (8-OHdG) (P = 0.002) showed a significant rise in the LDBE population. In addition, a significant correlation was observed between STAT3 methylation and oxidative stress, namely 8-OhdG and 8-iso-PGF2a. Furthermore, a multivariate analysis showed that the STAT3 methylation (structure loadings = 0.909) was the most strongly correlated with the other set of variables, especially with white blood cells (WBCs) (structure loadings = 0.675). Taken together, STAT3 methylation may be the underlying mechanism involved in the early toxic effect of LDBE, therefore, STAT3 methylation can be a novel sensitive biomarker for the toxic effect of low-dose benzene exposure.
机译:DNA甲基化模式的改变在疾病过程中起着至关重要的作用,并与癌症风险相关。为了探讨低剂量苯暴露(LDBE)对健康的毒性作用和早期敏感的生物标志物,并研究DNA甲基化与LDBE毒性作用之间的相关性,对571名工人进行了横断面研究; 312名暴露于1.82±1.16 mg m –3 空气苯浓度的工人被分配到LDBE组,而259名未知苯暴露(NBE)工人被分配到对照组,其中空气中苯的浓度为0.06±0.01 mg m –3 。检测了常规血液指标,丙氨酸转氨酶(ALT),氧化应激参数以及信号转导和转录激活因子3(STAT3)甲基化。与NBE人群相比,STAT3甲基化水平(P = 0.001),血小板(PLTs)(P = 0.002)和8-异前列腺素-PGFs(8-iso-PGF2a)(P = 0.001)显着降低,而ALT (P = 0.002)和8-羟基-2脱氧鸟苷(8-OHdG)(P = 0.002)显示LDBE人群显着增加。另外,在STAT3甲基化和氧化应激之间观察到显着相关性,即8-OhdG和8-iso-PGF2a。此外,多变量分析表明STAT3甲基化(结构负荷= 0.909)与其他变量集(与白细胞(WBCs))最相关(结构负荷= 0.675)。两者合计,STAT3甲基化可能是LDBE早期毒性作用所涉及的潜在机制,因此,STAT3甲基化可以成为低剂量苯暴露毒性作用的新型敏感生物标记。

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