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通过分析氧化应激反应、DNA甲基化相关基因表达和生活特性变化来评估阿司匹林对非靶标生物(大型溞)的生态毒性效应。

Assessment of ecotoxicity effects of aspirin on non-target organism (Daphnia magna) via analysis of the responses of oxidative stress, DNA methylation-related genes expressions and life traits changes.

作者信息

Cuiping He, Na Zhao, Limei Hu, Tang Tianli, Yang Yufeng, Xiangping Nie

机构信息

Department of Ecology, Jinan University, Guangzhou, 510632, China.

Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Guangzhou, 510632, China.

出版信息

Ecotoxicology. 2023 Mar;32(2):137-149. doi: 10.1007/s10646-023-02624-z. Epub 2023 Jan 21.

Abstract

Aspirin (acetylsalicylic acid, ASA), a widely used non-steroidal anti-inflammatory drug, was frequently detected in aquatic environments around the world. However, information on the potential toxic effects of aspirin on non-target aquatic invertebrates is limited. In the present study, we investigated the effects of ASA on the transcriptional expressions of antioxidant genes (Nrf2, Keap1, HO-1, GCLC, GPx, TRX, TrxR and Prx1) and DNA methylation genes (DNMT1, DNMT3 and TET2) in Daphnia magna (D. magna)for 24, 48 and 96 h and the changes of antioxidant enzymatic activity and GSH, MDA content for 48 h. The effects of ASA on the life traits of D. magna were also addressed via a 21-days chronic toxicity test. Results showed that the expressions of Nrf2 and its target genes (HO-1, GPx and TrxR, GCLC, TRX and Prx1) were induced to different degrees at 48 h and/or 96 h. The activity of antioxidant enzymes (SOD, CAT, GST and GPx) and MDA content increased but GSH content decreased, indicating that ASA caused oxidative stress in D. magna. ASA also changed the expression of DNA methylation genes, such as DNMT and TET2, in D. magna. We speculated that ASA may affect the antioxidant system responses through regulation of Nrf2/Keap1 signaling pathway, and/or through indirectly influencing DNA methylation levels by DNMT and TET gene expression, but the detailed mechanism needs further investigations. Chronic exposure to ASA for 21 days caused inhibitions on the growth, reproduction and behavior of D. magna (e.g., delaying days to the first brood and shortening the body length). In summary, ASA significantly affected the antioxidant responses of D. magna, and negatively disturbed its life traits in growth, development and reproduction.

摘要

阿司匹林(乙酰水杨酸,ASA)是一种广泛使用的非甾体抗炎药,在世界各地的水生环境中经常被检测到。然而,关于阿司匹林对非靶标水生无脊椎动物潜在毒性作用的信息有限。在本研究中,我们研究了ASA对大型溞(D. magna)抗氧化基因(Nrf2、Keap1、HO-1、GCLC、GPx、TRX、TrxR和Prx1)和DNA甲基化基因(DNMT1、DNMT3和TET2)转录表达的影响,作用时间为24、48和96小时,并研究了48小时时抗氧化酶活性以及GSH、MDA含量的变化。还通过为期21天的慢性毒性试验研究了ASA对大型溞生活特性的影响。结果表明,Nrf2及其靶基因(HO-1、GPx和TrxR、GCLC、TRX和Prx1)的表达在48小时和/或96小时受到不同程度的诱导。抗氧化酶(SOD、CAT、GST和GPx)的活性以及MDA含量增加,但GSH含量降低,表明ASA在大型溞中引起了氧化应激。ASA还改变了大型溞中DNA甲基化基因(如DNMT和TET2)的表达。我们推测,ASA可能通过调节Nrf2/Keap1信号通路影响抗氧化系统反应,和/或通过DNMT和TET基因表达间接影响DNA甲基化水平,但具体机制需要进一步研究。长期暴露于ASA 21天会抑制大型溞的生长、繁殖和行为(例如,延迟首次产卵天数并缩短体长)。总之,ASA显著影响大型溞的抗氧化反应,并对其生长、发育和繁殖的生活特性产生负面影响。

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