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Effects of norfloxacin nicotinate on the early life stage of zebrafish (Danio rerio): Developmental toxicity, oxidative stress and immunotoxicity

机译:NORFLOXACIN NICOTINATE对斑马鱼早期寿命的影响(Danio Rerio):发育毒性,氧化应激和免疫毒性

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摘要

Norfloxacin nicotinate (NOR-N), an adduct of norfloxacin (NOR) and nicotinic acid, has been widely used for replacing NOR in animal husbandry and fishery industry. Nowadays, increasing evidences showed that NOR could pose toxic effects on fish and other aquatic organisms, but as its adduct, whether NOR-N could cause adverse effects on aquatic organisms is still unclear. To evaluate the toxic effects of NOR-N on the early life stage of zebrafish, we determined the changes in embryonic development (hatching rate, body length, malformation rate and mortality), antioxidant enzyme (superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (Gpx)) activities, malondialdehyde (MDA) content and gene expression levels related to antioxidant enzymes (Cu/Zn-sod, Mn-sod, CAT and Gpx) and innate immune system (tumor necrosis factor alpha (TNF alpha), interferon (IFN), Interleukin-1 beta (IL-beta), IL-8, CXCL-clc, CC-chemokine, lysozyme (Lzy) and complement factors (C3)) after embryonic exposure to NOR-N till 96 hpf. The results showed that NOR-N exposure could decreased the hatching rate and body length, and increased abnormality and mortality as concentration-dependent during embryonic development process. NOR-N induced oxidative stress in zebrafish larvae through increasing the contents of MDA and the activities of SOD, CAT and Gpx, as well as the mRNA levels of genes related to these antioxidant enzymes. Moreover, the expression of TNF alpha IFN, IL-1 beta, IL-8, CXCL-clc, CC-chemokine, Lzy and C3 genes were significantly up-regulated after exposure to high concentration (5 and/or 25 mg/L) of NOR-N till 96 hpf, indicating that the innate immune system in zebrafish larvae was disturbed by NOR-N. Overall, our results suggested that NOR-N caused development toxicity, oxidative stress and immunotoxicity on the early life stage of zebrafish. Thus, widespread application of NOR-N might pose potential ecotoxicological risk on aquatic ecosystems.
机译:诺弗洛克星烟酸(Nor-N),诺氟沙星(也不)和烟酸的加合物已被广泛用于更换,也不用于畜牧业和渔业行业。如今,增加证据表明,也不会对鱼类和其他水生生物构成毒性作用,而是作为其加合物,NOR-N是否可能对水生生物产生不良影响仍不清楚。为了评估斑马鱼早期寿命的毒性作用,我们确定了胚胎发育(孵化率,体长,畸形率和死亡率),抗氧化酶(超氧化物歧化酶(SOD),过氧化氢酶(猫)的变化和谷胱甘肽过氧化物酶(GPX))活性,丙二醛(MDA)含量和与抗氧化酶(Cu / Zn-SOD,Mn-SOD,CAT和GPX)和先天免疫系统相关的基因表达水平(肿瘤坏死因子α(TNF alpha) ,干扰素(IFN),白细胞介素-1β(IL-BETA),IL-8,CXCL-CLC,CC-趋化因子,溶菌酶(LZY)和补体因子(C3))在胚胎暴露于NOR-N至96 HPF之后。结果表明,NOR-N暴露可能会降低孵化率和体长,以及在胚胎发育过程中依赖于浓度的异常和死亡率。通过增加MDA的含量和SOD,CAT和GPX的活性,以及​​与这些抗氧化酶相关的基因的mRNA水平,NOR-N在斑马鱼幼虫中诱导氧化应激。此外,在暴露于高浓度(5和/或25mg / L)后,TNFαIFN,IL-1β,IL-8,CXCL-CLC,CC-趋化因子,LZY和C3基因的表达显着上调Nor-N至96 HPF,表明斑马鱼幼虫的先天免疫系统受到NOR-N的干扰。总体而言,我们的结果表明,NOR-N导致斑马鱼早期寿命阶段的发育毒性,氧化应激和免疫毒性。因此,Nor-N的广泛应用可能会对水生生态系统产生潜在的生态毒理学风险。

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