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全氟烷基物质(PFAS)对两栖动物身体和肝脏状况的影响:脂质代谢在整个变态过程中是否受到干扰?

Effects of Perfluorinated Alkyl Substances (PFAS) on Amphibian Body and Liver Conditions: Is Lipid Metabolism Being Perturbed throughout Metamorphosis?

作者信息

Bushong Anna, Sepúlveda Maria, Scherer Meredith, Valachovic Abigail C, Neill C Melman, Horn Sophia, Choi Youn, Lee Linda S, Baloni Priyanka, Hoskins Tyler

机构信息

Department of Forestry and Natural Resources, Purdue University, West Lafayette, IN 47907, USA.

Faculty of Life Sciences, Universidad Andres Bello, Santiago 8370146, Chile.

出版信息

Toxics. 2024 Oct 10;12(10):732. doi: 10.3390/toxics12100732.

Abstract

Per- and polyfluoroalkyl substances (PFAS) may interact with peroxisome proliferator activated receptors (PPARs) and alter lipid homeostasis. Using , we investigated the effect of PFAS on (a) lipid homeostasis and whether this correlated to changes in body and hepatic condition; (b) the expression of hepatic genes regulated by PPAR; and (c) the hepatic lipidome. We chronically exposed tadpoles to 0.5 µg/L of either PFOS, PFHxS, PFOA, PFHxA, a binary mixture of PFOS and PFHxS (0.5 µg/L of each), or a control, from NF stage 52 through metamorphic climax. Growth, development, and survival were not affected, but we detected a sex-specific decrease in body condition at NF 66 (6.8%) and in hepatic condition (16.6%) across metamorphic climax for male tadpoles exposed to PFOS. We observed weak evidence for the transient downregulation of apolipoprotein-V () at NF 62 in tadpoles exposed to PFHxA. Acyl-CoA oxidase 1 () was downregulated only in males exposed to PFHxS (Ln(Fold Change) = -0.54). We detected PFAS-specific downregulation of structural glycerophospholipids, while semi-quantitative profiling detected the upregulation in numerous glycerophospholipids, sphingomyelins, and diglycerides. Overall, our findings indicate that PFAS can induce sex-specific effects that change across larval development and metamorphosis. We demonstrate that PFAS alter lipid metabolism at environmentally relevant concentrations through divergent mechanisms that may not be related to PPARs, with an absence of effects on body condition, demonstrating the need for more molecular studies to elucidate mechanisms of PFAS-induced lipid dysregulation in amphibians and in other taxa.

摘要

全氟和多氟烷基物质(PFAS)可能与过氧化物酶体增殖物激活受体(PPARs)相互作用并改变脂质稳态。我们通过实验研究了PFAS对(a)脂质稳态的影响以及这是否与身体和肝脏状况的变化相关;(b)受PPAR调节的肝脏基因的表达;(c)肝脏脂质组的影响。我们从NF阶段52到变态高峰期,将蝌蚪长期暴露于0.5μg/L的全氟辛烷磺酸(PFOS)、全氟己烷磺酸(PFHxS)、全氟辛酸(PFOA)、全氟己酸(PFHxA)、PFOS和PFHxS的二元混合物(各0.5μg/L)或对照中。生长、发育和存活未受影响,但我们检测到,在变态高峰期,暴露于PFOS的雄性蝌蚪在NF 66时身体状况出现性别特异性下降(6.8%),肝脏状况下降(16.6%)。我们观察到,暴露于PFHxA的蝌蚪在NF 62时载脂蛋白-V(APO-V)出现短暂下调的微弱证据。酰基辅酶A氧化酶1(ACOX1)仅在暴露于PFHxS的雄性中下调(对数变化倍数=-0.54)。我们检测到PFAS对结构性甘油磷脂有特异性下调,而半定量分析检测到许多甘油磷脂、鞘磷脂和甘油二酯上调。总体而言,我们的研究结果表明,PFAS可诱导性别特异性效应,且这些效应在幼体发育和变态过程中会发生变化。我们证明,PFAS在环境相关浓度下通过可能与PPARs无关的不同机制改变脂质代谢,且对身体状况无影响,这表明需要更多分子研究来阐明PFAS在两栖动物和其他类群中诱导脂质失调的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca26/11510839/efe9fa18457a/toxics-12-00732-g001.jpg

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