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首页> 外文期刊>BioMed research international >Intraperitoneal Exposure to Nano/Microparticles of Fullerene (C60) Increases Acetylcholinesterase Activity and Lipid Peroxidation in Adult Zebrafish (Danio rerio) Brain
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Intraperitoneal Exposure to Nano/Microparticles of Fullerene (C60) Increases Acetylcholinesterase Activity and Lipid Peroxidation in Adult Zebrafish (Danio rerio) Brain

机译:腹腔内暴露于纳米/微粒的富勒烯(C60)增加了成年斑马鱼(Danio Rerio)脑中的乙酰胆碱酯酶活性和脂质过氧化

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摘要

Even though technologies involving nano/micropartides have great potential, it is crucial to determine possible toxicity of these technological products before extensive use. Fullerenes C60 are nanomateriais with unique physicochemical and biological properties that are important for the development of many technological applications. The aim of this study was to evaluate the consequences of nonphotoexcited fullerene C60 exposure in brain acetylcholinesterase expression and activity, antioxidant responses, and oxidative damage using adult zebrafish as an animal model. None of the doses tested (7.5, 15, and 30 mg/kg) altered AChE activity, antioxidant responses, and oxidative damage when zebrafish were exposed to nonphotoexcited C60 nano/micropartides during 6 and 12 hours. However, adult zebrafish exposed to the 30 mg/kg dose for 24 hours have shown enhanced AChE activity and augmented lipid peroxidation (TBARS assays) in brain. In addition, the up-regulation of brain AChE activity was neither related to the transcriptional control (RT-qPCR analysis) nor to the direct action of nonphotoexcited C60 nano/micropartides on the protein (in vitro results) but probably involved a posttranscriptional or posttranslational modulation of this enzymatic activity. Taken together these findings provided further evidence of toxic effects on brain after C60 exposure.
机译:尽管涉及纳米/微瓶的技术具有很大的潜力,但在广泛使用之前确定这些技术产品可能的毒性至关重要。富勒烯C60是纳米室,具有独特的物理化学和生物特性,对许多技术应用的发展是重要的。本研究的目的是评估使用成年斑马鱼作为动物模型的脑乙酰胆碱酯酶表达和活性,抗氧化反应和氧化损伤的非摄影富烯C60暴露的后果。当斑马鱼在6和12小时内暴露于非摄影的C60纳米/微瓶中时,没有测试的剂量(7.5,15和30mg / kg)改变疼痛活性,抗氧化反应和氧化损伤。然而,暴露于30mg / kg剂量的成年斑马鱼24小时表明,脑中的增强活性和增强脂质过氧化(TBARS测定)。此外,脑疼痛活性的上调既不与转录控制(RT-QPCR分析)有关,也不是对蛋白质(体外结果)的非摄影C60纳米/微初级的直接作用,但可能涉及后术语或后期术语调节这种酶活性。在C60暴露后,这些发现提供了进一步的毒性对脑的进一步证据。

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