Department of Biosciences, Food and Environmental Technologies, University of Teramo, St. R. Balzarini 1, 64100 Teramo, Italy.
Department of Translational Medicine and LTTA Centre, University of Ferrara, St. Fossato di Mortara 70, 44121 Ferrara, Italy.
Int J Environ Res Public Health. 2023 Mar 24;20(7):5253. doi: 10.3390/ijerph20075253.
Per- and polyfluoroalkyl substances can be referred to as the most critical group of contaminants of emerging concern. They can accumulate in high concentration in the kidney and are known to potentially affect its function. Nonetheless, there is a lack of knowledge about their morphopathological effect on the glomerular filtration barrier. Since previous research suggests perfluorooctanoic acid (PFOA) induces glomerular protein leakage, the glomerular filtration barrier of 30 carp from the same parental stock (10 unexposed; 10 exposed to 200 ng L of PFOA; and 10 exposed to 2 mg L of PFOA for 56 days) was screened for possible PFOA-induced ultrastructural lesions in order to shed light on the related pathophysiology. PFOA exposure affected the glomerular filtration barrier in carp experimentally exposed to 2 mg L, showing ultrastructural alterations compatible with glomerulonephrosis: podocyte effacement, reduction of filtration slits and filtration slit diaphragms, basement membrane disarrangement, and occurrence of proteinaceous material in the urinary space. The results of the present research confirm the glomerular origin of the PFOA-induced protein leakage and can contribute to the mechanistic comprehension of PFOA's impact on renal function and to the assessment of the exposure effect of environmental pollutants on animals and humans, according to the One Health approach.
全氟和多氟烷基物质可被视为新兴关注污染物中最关键的一类。它们可以在肾脏中高度浓缩积累,并被认为可能影响其功能。尽管如此,人们对它们在肾小球滤过屏障方面的形态病理学影响仍知之甚少。由于先前的研究表明全氟辛酸(PFOA)会导致肾小球蛋白渗漏,因此对来自同一亲本组的 30 条鲤鱼的肾小球滤过屏障进行了筛选,以寻找可能由 PFOA 引起的超微结构损伤,从而为相关的病理生理学提供启示。实验暴露于 2mg/L PFOA 的鲤鱼的肾小球滤过屏障受到了 PFOA 的影响,显示出与肾小球肾炎相符的超微结构改变:足细胞覆盖、滤过缝和滤过缝隔膜减少、基底膜排列紊乱以及尿空间中出现蛋白质物质。本研究的结果证实了 PFOA 诱导的蛋白渗漏的肾小球起源,并有助于对 PFOA 对肾功能的影响的机制理解,以及根据“同一健康”方法评估环境污染物对动物和人类的暴露效应。