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Effects of environmental levels of cadmium lead and mercury on human renal function evaluated by structural equation modeling

机译:通过结构方程模型评估镉铅和汞的环境水平对人体肾功能的影响

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摘要

A relationship between exposure to heavy metals, including lead and cadmium, and renal dysfunction has long been suggested. However, modeling of the potential additive, or synergistic, impact of metals on renal dysfunction has proven to be challenging. In these studies, we used structural equation modeling (SEM), to investigate the relationship between heavy metal burden (serum and urine levels of lead, cadmium and mercury) and renal function using data from the NHANES database. We were able to generate a model with goodness of fit indices consistent with a well-fitting model. This model demonstrated that lead and cadmium had a negative relationship with renal function, while mercury did not contribute to renal dysfunction. Interestingly, a linear relationship between lead and loss of renal function was observed, while the maximal impact of cadmium occurred at or above serum cadmium levels of 0.8 µg/L. The interaction of lead and cadmium in loss of renal function was also observed in the model. These data highlight the use of SEM to model interaction between environmental contaminants and pathophysiology, which has important implications in mechanistic and regulatory toxicology.
机译:长期以来,人们一直建议接触铅和镉等重金属与肾脏功能障碍之间的关系。但是,对金属对肾脏功能障碍的潜在加性或协同作用的建模已证明具有挑战性。在这些研究中,我们使用了结构方程模型(SEM),使用NHANES数据库中的数据研究了重金属负荷(血清和尿液中铅,镉和汞的水平)与肾功能之间的关系。我们能够生成拟合指数良好的模型,该模型与拟合模型一致。该模型表明铅和镉与肾功能呈负相关,而汞并未导致肾功能障碍。有趣的是,观察到铅与肾功能丧失之间存在线性关系,而镉的最大影响发生在血清镉水平为0.8 µg / L或更高时。在模型中还观察到铅和镉在肾功能丧失中的相互作用。这些数据强调了使用SEM建模环境污染物和病理生理学之间的相互作用,这对机理和调节毒理学具有重要意义。

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