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Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines

Dimethomorph (DMM) is a broad-spectrum fungicide used globally in agricultural production, but little is known regarding the immunotoxicity of DMM in humans. In this study, the immunotoxicity of DMM on human Jurkat T cells was evaluated in vitro. The results indicated that the half-effective concent...

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Autores principales: Li, Yun-Cheng, Liu, Shu-Yan, Meng, Fan-Bing, Xu, Shu-Hui, Qiu, Jing, Qian, Yong-Zhong, Xu, Yan-Yang, Li, Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738110/
https://www.ncbi.nlm.nih.gov/pubmed/36496656
http://dx.doi.org/10.3390/foods11233848
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author Li, Yun-Cheng
Liu, Shu-Yan
Meng, Fan-Bing
Xu, Shu-Hui
Qiu, Jing
Qian, Yong-Zhong
Xu, Yan-Yang
Li, Yun
author_facet Li, Yun-Cheng
Liu, Shu-Yan
Meng, Fan-Bing
Xu, Shu-Hui
Qiu, Jing
Qian, Yong-Zhong
Xu, Yan-Yang
Li, Yun
author_sort Li, Yun-Cheng
collection PubMed
description Dimethomorph (DMM) is a broad-spectrum fungicide used globally in agricultural production, but little is known regarding the immunotoxicity of DMM in humans. In this study, the immunotoxicity of DMM on human Jurkat T cells was evaluated in vitro. The results indicated that the half-effective concentration (EC(50)) of DMM for Jurkat cells was 126.01 mg/L (0.32 mM). To further elucidate the underlying mechanism, transcriptomics based on RNA sequencing for exposure doses of EC(25) (M21) and EC(10) (L4) was performed. The results indicated that compared to untreated samples (Ctr), 121 genes (81 upregulated, 40 downregulated) and 30 genes (17 upregulated, 13 downregulated) were significantly differentially regulated in the L4 and M21 samples, respectively. A gene ontology analysis indicated that the significantly differentially expressed genes (DEGs) were mostly enriched in the negative regulation of cell activities, and a KEGG pathway analysis indicated that the DEGs were mainly enriched in the immune regulation and signal transduction pathways. A quantitative real-time PCR for the selected genes showed that compared to the high-dose exposure (M21), the effect of the low-dose DMM exposure (L4) on gene expression was more significant. The results indicated that DMM has potential immunotoxicity for humans, and this toxicity cannot be ignored even at low concentrations.
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spelling pubmed-97381102022-12-11 Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines Li, Yun-Cheng Liu, Shu-Yan Meng, Fan-Bing Xu, Shu-Hui Qiu, Jing Qian, Yong-Zhong Xu, Yan-Yang Li, Yun Foods Article Dimethomorph (DMM) is a broad-spectrum fungicide used globally in agricultural production, but little is known regarding the immunotoxicity of DMM in humans. In this study, the immunotoxicity of DMM on human Jurkat T cells was evaluated in vitro. The results indicated that the half-effective concentration (EC(50)) of DMM for Jurkat cells was 126.01 mg/L (0.32 mM). To further elucidate the underlying mechanism, transcriptomics based on RNA sequencing for exposure doses of EC(25) (M21) and EC(10) (L4) was performed. The results indicated that compared to untreated samples (Ctr), 121 genes (81 upregulated, 40 downregulated) and 30 genes (17 upregulated, 13 downregulated) were significantly differentially regulated in the L4 and M21 samples, respectively. A gene ontology analysis indicated that the significantly differentially expressed genes (DEGs) were mostly enriched in the negative regulation of cell activities, and a KEGG pathway analysis indicated that the DEGs were mainly enriched in the immune regulation and signal transduction pathways. A quantitative real-time PCR for the selected genes showed that compared to the high-dose exposure (M21), the effect of the low-dose DMM exposure (L4) on gene expression was more significant. The results indicated that DMM has potential immunotoxicity for humans, and this toxicity cannot be ignored even at low concentrations. MDPI 2022-11-28 /pmc/articles/PMC9738110/ /pubmed/36496656 http://dx.doi.org/10.3390/foods11233848 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Yun-Cheng
Liu, Shu-Yan
Meng, Fan-Bing
Xu, Shu-Hui
Qiu, Jing
Qian, Yong-Zhong
Xu, Yan-Yang
Li, Yun
Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title_full Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title_fullStr Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title_full_unstemmed Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title_short Comparative Transcriptome Analysis to Investigate the Immunotoxicity Mechanism Triggered by Dimethomorph on Human Jurkat T Cell Lines
title_sort comparative transcriptome analysis to investigate the immunotoxicity mechanism triggered by dimethomorph on human jurkat t cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738110/
https://www.ncbi.nlm.nih.gov/pubmed/36496656
http://dx.doi.org/10.3390/foods11233848
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