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首页> 外文期刊>Environmental Science and Pollution Research >Rescheduling the process of nanoparticle removal used for water mercury remediation can increase the risk to aquatic organism: evidence of innate immune functions modulation in European eel (Anguilla anguilla L.)
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Rescheduling the process of nanoparticle removal used for water mercury remediation can increase the risk to aquatic organism: evidence of innate immune functions modulation in European eel (Anguilla anguilla L.)

机译:重新安排用于水银修复的纳米颗粒去除过程的时间表可能会增加水生生物的风险:欧洲鳗(安圭拉鳗)固有免疫功能调节的证据

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This study aimed to assess the mechanisms of innate immune function responses to silica-coated iron oxide nanoparticle functionalized with dithiocarbamate groups (IONP) exposure alone and its associated mercury (Hg) in European eel (Anguilla anguilla L.) phagocytes isolated from peritoneum (P-phagocytes), gill (G-phagocytes), head kidney (HK-phagocytes) and spleen (S-phagocytes). The study evaluated viability, phagocytosis, oxidative burst activity (OBA) and lipid peroxidation (LPO). Four groups were made: (1) 2 x 10(6) phagocytes + RPMI-1640 (control), (2) 2 x 10(6) phagocytes + IONP (2.5 mg L-1), (3) 2 x 10(6) phagocytes + Hg (50 mu g L-1) and (4) 2 x 10(6) phagocytes + IONP + Hg. Samplings were performed at 0, 2, 4, 8, 16, 24, 48 and 72 h of exposure. A. anguilla P-, G-, HK- and S-phagocytes in vitro exposure to IONP alone revealed either increased (except HK-phagocytes at 16 h) or no change in viability, suggesting that the cells are metabolically active and resistant to IONP exposure alone. In terms of phagocytes overactivation and reactive oxygen species (ROS) production as an indirect mechanism of immunotoxicity, the phagocytes responded in the following manner: P->S->HK-=G-phagocytes for IONP exposure alone, S->HK->P-=G-phagocytes for Hg exposure alone and HK->G-=S->P-phagocytes for concomitant exposure. Overall, considering Hg as a surrogate for metals and its association with IONP, as well as the likelihood that it could pose a serious threat to aquatic organisms by modulating their immune defense mechanisms if accidentally discharged into the aquatic environment, current results suggest that the step of IONP-metal complex removal must not be underrated and should be processed without any more ado.
机译:这项研究旨在评估从腹膜(P (吞噬细胞),g(G吞噬细胞),头肾(HK吞噬细胞)和脾脏(S吞噬细胞)。该研究评估了生存能力,吞噬作用,氧化爆发活性(OBA)和脂质过氧化(LPO)。分为四组:(1)2 x 10(6)吞噬细胞+ RPMI-1640(对照),(2)2 x 10(6)吞噬细胞+ IONP(2.5 mg L-1),(3)2 x 10( 6)吞噬细胞+ Hg(50μg L-1)和(4)2 x 10(6)吞噬细胞+ IONP + Hg。在暴露的0、2、4、8、16、24、48和72小时进行采样。单独暴露于IONP的安圭an P,G,HK和S吞噬细胞显示增加(除了16小时的HK吞噬细胞)或存活率无变化,表明这些细胞具有代谢活性并对IONP具有抗性独自暴露。就吞噬细胞过度活化和活性氧(ROS)的产生作为免疫毒性的间接机制而言,吞噬细胞的反应方式如下:P-> S-> HK- = G吞噬细胞仅用于IONP暴露,S-> HK- > P- = G-吞噬细胞单独暴露Hg,HK-> G- = S-> P-吞噬细胞单独暴露。总的来说,考虑到汞是金属的替代物及其与IONP的关系,以及如果不慎将其释放到水生环境中,可能通过调节其免疫防御机制而对水生生物构成严重威胁的可能性,目前的结果表明, IONP金属配合物去除量一定不能被低估,应该立即进行处理。

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