Two novel in vitro assays to screen chemicals for their capacity to inhibit thyroid hormone transmembrane transporter proteins OATP1C1 and OAT4.

IF 4.8 2区 医学 Q1 TOXICOLOGY Archives of Toxicology Pub Date : 2024-09-01 Epub Date: 2024-05-18 DOI:10.1007/s00204-024-03787-2
Fabian Wagenaars, Peter Cenijn, Zhongli Chen, Marcel Meima, Martin Scholze, Timo Hamers
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Abstract

Early brain development depends on adequate transport of thyroid hormones (THs) from the maternal circulation to the fetus. To reach the fetal brain, THs have to cross several physiological barriers, including the placenta, blood-brain-barrier and blood-cerebrospinal fluid-barrier. Transport across these barriers is facilitated by thyroid hormone transmembrane transporters (THTMTs). Some endocrine disrupting chemicals (EDCs) can interfere with the transport of THs by THTMTs. To screen chemicals for their capacity to disrupt THTMT facilitated TH transport, in vitro screening assays are required. In this study, we developed assays for two THTMTs, organic anion transporter polypeptide 1C1 (OATP1C1) and organic anion transporter 4 (OAT4), both known to play a role in the transport of THs across barriers. We used overexpressing cell models for both OATP1C1 and OAT4, which showed an increased uptake of radiolabeled T4 compared to control cell lines. Using these models, we screened various reference and environmental chemicals for their ability to inhibit T4 uptake by OATP1C1 and OAT4. Tetrabromobisphenol A (TBBPA) was identified as an OATP1C1 inhibitor, more potent than any of the reference chemicals tested. Additionally perfluorooctanesulfonic acid (PFOS), perfluoroctanic acid (PFOA), pentachlorophenol and quercetin were identified as OATP1C1 inhibitors in a similar range of potency to the reference chemicals tested. Bromosulfophthalein, TBBPA, PFOA and PFOS were identified as potent OAT4 inhibitors. These results demonstrate that EDCs commonly found in our environment can disrupt TH transport by THTMTs, and contribute to the identification of molecular mechanisms underlying TH system disruption chemicals.

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用两种新型体外试验筛选化学品抑制甲状腺激素跨膜转运蛋白 OATP1C1 和 OAT4 的能力。
早期大脑发育取决于甲状腺激素(THs)从母体循环到胎儿的充分运输。要到达胎儿大脑,甲状腺激素必须穿越几个生理屏障,包括胎盘、血脑屏障和血脑脊液屏障。甲状腺激素跨膜转运体(THTMTs)可促进其穿越这些屏障。一些干扰内分泌的化学物质(EDCs)会干扰 THTMTs 的转运。要筛选出具有干扰 THTMT 促进的 TH 转运能力的化学品,需要进行体外筛选试验。在本研究中,我们开发了针对两种 THTMT 的检测方法,即有机阴离子转运体多肽 1C1 (OATP1C1) 和有机阴离子转运体 4 (OAT4)。我们使用了过表达 OATP1C1 和 OAT4 的细胞模型,与对照细胞系相比,它们对放射性标记 T4 的吸收都有所增加。利用这些模型,我们筛选了各种参考化学物质和环境化学物质,以检测它们抑制 OATP1C1 和 OAT4 吸收 T4 的能力。结果表明,四溴双酚 A(TBBPA)是一种 OATP1C1 抑制剂,其抑制作用强于所测试的任何参考化学品。此外,全氟辛烷磺酸(PFOS)、全氟辛酸(PFOA)、五氯苯酚和槲皮素也被确定为 OATP1C1 抑制剂,其效力范围与所测试的参考化学品相似。溴代磺酞、四溴双酚A、全氟辛酸和全氟辛烷磺酸被鉴定为强效的 OAT4 抑制剂。这些结果表明,我们环境中常见的 EDCs 可以通过 THTMTs 破坏 TH 转运,并有助于确定破坏 TH 系统的化学品的分子机制。
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来源期刊
Archives of Toxicology
Archives of Toxicology 医学-毒理学
CiteScore
11.60
自引率
4.90%
发文量
218
审稿时长
1.5 months
期刊介绍: Archives of Toxicology provides up-to-date information on the latest advances in toxicology. The journal places particular emphasis on studies relating to defined effects of chemicals and mechanisms of toxicity, including toxic activities at the molecular level, in humans and experimental animals. Coverage includes new insights into analysis and toxicokinetics and into forensic toxicology. Review articles of general interest to toxicologists are an additional important feature of the journal.
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