首页> 外文期刊>The Science of the Total Environment >Time-dependent effects of polystyrene nanoparticles in brine shrimp Artemiafranciscana at physiological, biochemical and molecular levels
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Time-dependent effects of polystyrene nanoparticles in brine shrimp Artemiafranciscana at physiological, biochemical and molecular levels

机译:聚苯乙烯纳米粒子在生理,生化和分子水平盐水虾蒿癌中聚苯乙烯纳米粒子的时间依赖性作用

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Micro-(5 mm) and nanoplastics (1 mu m) are emerging threats for marine ecosystems worldwide. Brine shrimp Artemia is recognized as a suitable model among planktonic species for studying the impact of polystyrene nanoparticles (PS NPs) through short and long-term bioassays. Our study aims to evaluate the time-dependent effects of cationic amino-modified PS-NH2 (50 nm) in A. franciscana after short- (48 h) and long-term exposure (14 days). For this purpose, nauplii were exposed to a concentration range of PS-NH2 (0.1, 1, 3 and 10 mu g/mL) in natural sea water (NSW), and physiological, biochemical and molecular responses were investigated. Shortterm exposure to PS-NH2 caused a decrease in nauplii growth and affected the development in a concentration-dependent manner, long-term exposure impaired the survival, but not the growth and feeding behavior. Oxidative stress was detected after short term exposure as the decrease in the activity of antioxidant enzymes, and was fully evident in the long-term as lipid peroxidation, suggesting an accumulative effect. The decrease in Cholinesterase (ChE) activity observed indicates possible neurotoxic action of PS-NH2. Also, Carboxylesterase (CbE) inhibition by PS-NH2, described for the first time in this study, anticipates potential effects in biotransformation of exogenous and endogenous compounds, being the crustacean juvenile hormone methyl farnesoate (MF) that regulates development and molting, one candidate. Furthermore, short- and long-term exposure to PS-NH2 affect the expression of genes involved in cell protection, development and molting. Overall, our results reveal that low PS-NH2 concentrations induce physiological, biochemical and molecular (changes in gene expression) alterations in Artemia, and point at their potential risk for this model organism, supporting the general concern about nanoplastics occurrences in aquatic environments and their ability to represent an ecological threat for aquatic zooplanktonic species. (C) 2019 Elsevier B.V. All rights reserved.
机译:微 - (<5mm)和纳米塑料(<1 mm m)是全球海洋生态系统的新兴威胁。盐水虾蒿属植物被认为是用于研究聚苯乙烯纳米颗粒(PS NPS)的浮游物种中的合适模型,通过短期和长期生物测定。我们的研究旨在评估阳离子氨基改性PS-NH2(50nm)在短期(48小时)和长期暴露(14天)后的阳离子氨基修饰的PS-NH2(50nm)的时间依赖性。为此目的,Nauplii在天然海水(NSW)中暴露于PS-NH 2(0.1,1,3和10μg/ ml)的浓度范围内,并研究生理,生化和分子反应。短期暴露于PS-NH2导致Nauplii的增长降低,并以浓度依赖的方式影响发展,长期暴露损害存活,但不是生长和饲养行为。在短期暴露后检测到氧化应激作为抗氧化酶活性的降低,并且在长期作为脂质过氧化的长期完全明显,表明累积效果。观察到的胆碱酯酶(CHE)活性的降低表明PS-NH2可能的神经毒性作用。此外,PS-NH2的羧基酯酶(CBE)抑制在本研究中首次描述,预期外源性和内源化合物的生物转化的潜在影响,是调节发育和蜕皮的甲壳类动物幼年激素甲基法甲酸甲酸(MF),一个候选人。此外,短期和长期暴露于PS-NH2会影响参与细胞保护,发育和蜕皮的基因的表达。总体而言,我们的结果表明,低PS-NH2浓度诱导伪造物中的生理,生化和分子(基因表达的变化)改变,并以这种模型生物的潜在风险为指点,支持一般担忧水生环境中的纳米型群体发生群体能够代表水生浮游动物物种的生态威胁。 (c)2019 Elsevier B.v.保留所有权利。

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