Analysis of human hair to assess exposure to organophosphate flame retardants: Influence of hair segments and gender differences

有机磷 化学 磷酸盐 内科学 内分泌学 解剖 生物 生物化学 杀虫剂 医学 生态学
作者
Lin Qiao,Xiaobo Zheng,Jing Zheng,Wei-Xiang Lei,Hong-Fang Li,Mei-Huan Wang,Chuntao He,She-Jun Chen,Jiangang Yuan,Xiao‐Jun Luo,Yunjiang Yu,Zhongyi Yang,Bi‐Xian Mai
出处
期刊:Environmental Research [Elsevier BV]
卷期号:148: 177-183 被引量:50
标识
DOI:10.1016/j.envres.2016.03.032
摘要

Hair is a promising, non-invasive, human biomonitoring matrix that can provide insight into retrospective and integral exposure to organic pollutants. In the present study, we measured the concentrations of organophosphate flame retardants (PFRs) in hair and serum samples from university students in Guangzhou, China, and compared the PFR concentrations in the female hair segments using paired distal (5~10cm from the root) and proximal (0~5cm from the root) samples. PFRs were not detected in the serum samples. All PFRs except tricresyl phosphate (TMPP) and tri-n-propyl phosphate (TPP) were detected in more than half of all hair samples. The concentrations of total PFRs varied from 10.1 to 604ng/g, with a median of 148ng/g. Tris(chloroisopropyl) phosphate (TCIPP) and tri(2-ethylexyl) phosphate (TEHP) were the predominant PFRs in hair. The concentrations of most PFRs in the distal segments were 1.5~8.6 times higher than those in the proximal segments of the hair (t-test, p<0.05), which may be due to the longer exposure time of the distal segments to external sources. The values of log (PFR concentrations-distal/PFR concentrations-proximal) were positively and significantly correlated with log KOA of PFRs (p<0.05, r=0.68), indicating that PFRs with a higher log KOA tend to accumulate in hair at a higher rate than PFRs with a lower log KOA. Using combined segments of female hair, significantly higher PFR concentrations were observed in female hair than in male hair. In contrast, female hair exhibited significantly lower PFR concentrations than male hair when using the same hair position for both genders (0-5cm from the scalp). The controversial results regarding gender differences in PFRs in hair highlight the importance of segmental analysis when using hair as an indicator of human exposure to PFRs.
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