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Interaction effects of lead on bioavailability and pharmacokinetics of arsenic in the rat

机译:铅对大鼠砷的生物利用度和药代动力学的相互作用

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摘要

Arsenic (As) and lead (Pb) are common contaminants found in mine waste materials. For an evidence-based risk assessment, it is important to better understand the potential interaction of mixed contaminants; and this interaction study was investigated in an in vivo rat model. Following co-administration of a fixed dose of AsV as in sodium arsenate and different doses of Pb as lead acetate to Sprague–Dawley rats, blood arsenic concentration and bioavailability decreased. A decrease in As blood concentration when lead was co-administered was observed with increasing lead doses. Pharmacokinetic parameters for As in the blood showed faster absorption and elimination of this metalloid in the presence of Pb. The elimination half-life of As decreased from 67 days in As solo group to 27–30 with doses of Pb. Bioavailability of As was also decreased by 30–43 % in the presence of Pb. Decreased urinary excretion of Pb and tissue accumulation were also observed. It indicates lower absorption of As when co-administered with Pb. A probable explanation for these findings is that As co-administration with Pb could have resulted in the formation of less soluble lead arsenate. However, such an interaction between As and Pb could only explain about one-third of the variation when real mine waste materials containing both of these elements were administered to rats. This suggests that other effects from physical and chemical parameters could contribute to the bioavailability of arsenic in complex real environmental samples.
机译:砷(As)和铅(Pb)是矿山废料中常见的污染物。对于基于证据的风险评估,重要的是更好地了解混合污染物的潜在相互作用。并在体内大鼠模型中研究了该相互作用研究。向Sprague-Dawley大鼠共同施用固定剂量的砷酸砷酸砷酸钠和不同剂量的铅Pb作为乙酸铅后,血砷浓度和生物利用度下降。随着铅剂量的增加,观察到当铅共同给药时,As血药浓度降低。在铅存在下,血液中砷的药代动力学参数显示该类金属吸收和清除速度更快。砷的消除半衰期从砷独奏组的67天减少到Pb剂量的27-30天。在铅的存在下,砷的生物利用度也降低了30–43%。还观察到尿中铅的排泄减少和组织积累。与Pb并用时,表明As的吸收较低。这些发现的一个可能的解释是,与Pb并用可能会导致形成难溶的砷酸铅。但是,当向大鼠施用含有这两种元素的真实矿山废料时,As和Pb之间的这种相互作用只能解释这种变化的大约三分之一。这表明来自物理和化学参数的其他影响可能会导致砷在复杂的实际环境样品中的生物利用度。

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