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Prolonged exposure to arsenic in UK private water supplies: toenail, hair and drinking water concentrations

机译:英国私人供水中砷的长期暴露:脚趾甲,头发和饮用水中的浓度

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Chronic exposure to arsenic (As) in drinking water is an established cause of cancer and other adverse health effects. Arsenic concentrations >10 mu g L-1 were previously measured in 5% of private water supplies (PWS) in Cornwall, UK. The present study investigated prolongued exposure to As by measuring biomarkers in hair and toenail samples from 212 volunteers and repeated measurements of As in drinking water from 127 households served by PWS. Strong positive Pearson correlations (r(p) = 0.95) indicated stability of water As concentrations over the time period investigated (up to 31 months). Drinking water As concentrations were positively correlated with toenail (r(p) = 0.53) and hair (r(p) = 0.38) As concentrations - indicative of prolonged exposure. Analysis of washing procedure solutions provided strong evidence of the effective removal of exogenous As from toenail samples. Significantly higher As concentrations were measured in hair samples from males and smokers and As concentrations in toenails were negatively associated with age. A positive association between seafood consumption and toenail As and a negative association between home-grown vegetable consumption and hair As was observed for volunteers exposed to <1 As mu g L-1 in drinking water. These findings have important implications regarding the interpretation of toenail and hair biomarkers. Substantial variation in biomarker As concentrations remained unaccounted for, with soil and dust exposure as possible explanations.
机译:饮用水中长期暴露于砷(As)是引起癌症和其他不良健康影响的确定原因。先前曾在英国康沃尔郡的5%私人供水(PWS)中测量过> 10μg L-1的砷浓度。本研究通过测量212名志愿者的头发和脚趾甲样品中的生物标志物以及对PWS服务的127户家庭的饮用水中的As进行了重复测量,研究了延长的As暴露时间。强烈的皮尔逊正相关(r(p)= 0.95)表明在所研究的时间段内(长达31个月)水砷浓度稳定。饮用水中的As浓度与脚趾甲(r(p)= 0.53)和头发(r(p)= 0.38)呈正相关,As浓度-表示长时间接触。洗涤程序溶液的分析为有效去除趾甲样品中的外源砷提供了有力的证据。在男性和吸烟者的头发样本中测得的砷浓度显着较高,而脚趾甲中的砷浓度与年龄呈负相关。在饮用水中暴露于<1 As mu g L-1的志愿者中,观察到海鲜消费和趾甲砷之间呈正相关,而自家种植的蔬菜消费与头发As之间呈负相关。这些发现对趾甲和头发生物标志物的解释具有重要意义。生物标志物的显着变化由于浓度尚不明确,可能与土壤和灰尘接触有关。

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