Transcriptomic-based evaluation of trichloroethylene glutathione and cysteine conjugates demonstrate phenotype-dependent stress responses in a panel of human in vitro models

被引:7
|
作者
Capinha, Liliana [1 ]
Zhang, Yaran [1 ,2 ]
Holzer, Anna-Katharina [3 ]
Uckert, Anna-Katharina [3 ]
Zana, Melinda [4 ]
Carta, Giada [1 ]
Murphy, Cormac [1 ]
Baldovini, Jenna [1 ]
Mazidi, Zahra [5 ]
Grillari, Johannes [8 ,9 ]
Dinnyes, Andras [4 ,6 ]
van de Water, Bob [7 ]
Leist, Marcel [3 ]
Commandeur, Jan N. M. [1 ]
Jennings, Paul [1 ]
机构
[1] Vrije Univ Amsterdam, Amsterdam Inst Mol Med & Syst, Div Mol & Computat Toxicol, De Boelelaan 1108, NL-1081 HZ Amsterdam, Netherlands
[2] Vrije Univ Amsterdam, Amsterdam UMC, Human Genet, Genom Neurodegenerat Dis & Aging,Locat VUmc, Amsterdam, Netherlands
[3] Univ Konstanz, Dept Inaugurated Doerenkamp Zbinden Fdn, In Vitro Toxicol & Biomed, D-78457 Constance, Germany
[4] BioTalentum Ltd, H-2100 Godollo, Hungary
[5] Evercyte GmbH, Vienna, Austria
[6] Hungarian Univ Agr & Life Sci, Inst Physiol & Anim Nutr, Dept Physiol & Anim Hlth, H-2100 Godollo, Hungary
[7] Leiden Univ, Leiden Acad Ctr Drug Res LACDR, Div Drug Discovery & Safety, Leiden, Netherlands
[8] BOKU Univ Nat Resource & Life Sci BOKU, Inst Mol Biotechnol, Dept Biotechnol, Vienna, Austria
[9] Ludwig Boltzmann Inst Traumatol, Res Ctr Cooperat AUVA, Vienna, Austria
关键词
Cytotoxicity; Transcriptomics; Glutathione conjugation pathway; Multi-organ toxicity; Hazard identification; RENAL TOXICITY; CELLS; S-(1,2-DICHLOROVINYL)-L-CYSTEINE; NEPHROTOXICITY; BIOACTIVATION; MECHANISMS; PATHWAYS; RISK; BIOTRANSFORMATION; CARCINOGENICITY;
D O I
10.1007/s00204-022-03436-6
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Environmental or occupational exposure of humans to trichloroethylene (TCE) has been associated with different extrahepatic toxic effects, including nephrotoxicity and neurotoxicity. Bioactivation of TCE via the glutathione (GSH) conjugation pathway has been proposed as underlying mechanism, although only few mechanistic studies have used cell models of human origin. In this study, six human derived cell models were evaluated as in vitro models representing potential target tissues of TCE-conjugates: RPTEC/TERT1 (kidney), HepaRG (liver), HUVEC/TERT2 (vascular endothelial), LUHMES (neuronal, dopaminergic), human induced pluripotent stem cells (hiPSC) derived peripheral neurons (UKN5) and hiPSC-derived differentiated brain cortical cultures containing all subtypes of neurons and astrocytes (BCC42). A high throughput transcriptomic screening, utilizing mRNA templated oligo-sequencing (TempO-Seq), was used to study transcriptomic effects after exposure to TCE-conjugates. Cells were exposed to a wide range of concentrations of S-(1,2-trans-dichlorovinyl)glutathione (1,2-DCVG), S-(1,2-trans-dichlorovinyl)-L-cysteine (1,2-DCVC), S-(2,2-dichlorovinyl)glutathione (2,2-DCVG), and S-(2,2-dichlorovinyl)-L-cysteine (2,2-DCVC). 1,2-DCVC caused stress responses belonging to the Nrf2 pathway and Unfolded protein response in all the tested models but to different extents. The renal model was the most sensitive model to both 1,2-DCVC and 1,2-DCVG, with an early Nrf2-response at 3 mu M and hundreds of differentially expressed genes at higher concentrations. Exposure to 2,2-DCVG and 2,2-DCVC also resulted in the upregulation of Nrf2 pathway genes in RPTEC/TERT1 although at higher concentrations. Of the three neuronal models, both the LUHMES and BCC42 showed significant Nrf2-responses and at higher concentration UPR-responses, supporting recent hypotheses that 1,2-DCVC may be involved in neurotoxic effects of TCE. The cell models with the highest expression of gamma-glutamyltransferase (GGT) enzymes, showed cellular responses to both 1,2-DCVG and 1,2-DCVC. Little to no effects were found in the neuronal models from 1,2-DCVG exposure due to their low GGT-expression. This study expands our knowledge on tissue specificity of TCE S-conjugates and emphasizes the value of human cell models together with transcriptomics for such mechanistic studies.
引用
收藏
页码:523 / 545
页数:23
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  • [1] Transcriptomic-based evaluation of trichloroethylene glutathione and cysteine conjugates demonstrate phenotype-dependent stress responses in a panel of human in vitro models
    Liliana Capinha
    Yaran Zhang
    Anna-Katharina Holzer
    Anna-Katharina Ückert
    Melinda Zana
    Giada Carta
    Cormac Murphy
    Jenna Baldovini
    Zahra Mazidi
    Johannes Grillari
    Andras Dinnyes
    Bob van de Water
    Marcel Leist
    Jan N. M. Commandeur
    Paul Jennings
    Archives of Toxicology, 2023, 97 : 523 - 545