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Comparative study on methyl- and ethylmercury-induced toxicity in C6 glioma cells and the potential role of LAT-1 in mediating mercurial-thiol complexes uptake

机译:甲基汞和乙基汞诱导的C6胶质瘤细胞毒性和LAT-1在介导汞硫醇复合物吸收中的潜在作用的比较研究

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摘要

Various forms of mercury possess different rates of absorption, metabolism and excretion, and consequently, toxicity. Methylmercury (MeHg) is a highly neurotoxic organic mercurial. Human exposure is mostly due to ingestion of contaminated fish. Ethylmercury (EtHg), another organic mercury compound, has received significant toxicological attention due to its presence in thimerosal-containing vaccines. This study was designed to compare the toxicities induced by MeHg and EtHg, as well as by their complexes with cysteine (MeHg-S-Cys and EtHg-S-Cys) in the C6 rat glioma cell line. MeHg and EtHg caused significant (p0.0001) decreases in cellular viability when cells were treated during 30min with each mercurial following by a washing period of 24h (EC50 values of 4.83 and 5.05μM, respectively). Significant cytotoxicity (p0.0001) was also observed when cells were treated under the same conditions with MeHg-S-Cys and EtHg-S-Cys, but the respective EC50 values were significantly increased (11.2 and 9.37μM). l-Methionine, a substrate for the l-type neutral amino acid carrier transport (LAT) system, significantly protected against the toxicities induced by both complexes (MeHg-S-Cys and EtHg-S-Cys). However, no protective effects of l-methionine were observed against MeHg and EtHg toxicities. Corroborating these findings, l-methionine significantly decreased mercurial uptake when cells were exposed to MeHg-S-Cys (p=0.028) and EtHg-S-Cys (p=0.023), but not to MeHg and EtHg. These results indicate that the uptake of MeHg-S-Cys and EtHg-S-Cys into C6 cells is mediated, at least in part, through the LAT system, but MeHg and EtHg enter C6 cells by mechanisms other than LAT system.
机译:各种形式的汞具有不同的吸收,代谢和排泄速率,因此具有毒性。甲基汞(MeHg)是一种高度神经毒性的有机汞。人体暴露主要是由于摄入受污染的鱼。乙基汞(EtHg)是另一种有机汞化合物,由于其在含硫柳汞的疫苗中的存在而受到了广泛的毒理学关注。本研究旨在比较MeHg和EtHg以及它们与半胱氨酸的复合物(MeHg-S-Cys和EtHg-S-Cys)在C6大鼠神经胶质瘤细胞系中诱导的毒性。 MeHg和EtHg导致细胞活力显着(p <0.0001)下降,当细胞在每次清洗30分钟的过程中经过24小时洗涤后(EC50值分别为4.83和5.05μM)。当在相同条件下用MeHg-S-Cys和EtHg-S-Cys处理细胞时,也观察到显着的细胞毒性(p <0.0001),但各自的EC50值均显着增加(11.2和9.37μM)。 l-蛋氨酸是l型中性氨基酸载体转运(LAT)系统的底物,可显着保护免受两种复合物(MeHg-S-Cys和EtHg-S-Cys)诱导的毒性。然而,没有观察到L-蛋氨酸对MeHg和EtHg毒性的保护作用。证实了这些发现,当细胞暴露于MeHg-S-Cys(p = 0.028)和EtHg-S-Cys(p = 0.023)而不是MeHg和EtHg时,L-蛋氨酸显着降低了汞的吸收。这些结果表明,MeHg-S-Cys和EtHg-S-Cys对C6细胞的摄取至少部分地通过LAT系统介导,但是MeHg和EtHg通过LAT系统以外的机制进入C6细胞。

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