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Adverse effects of microplastics and oxidative stress-induced MAPK/Nrf2 pathway-mediated defense mechanisms in the marine copepod Paracyclopina nana

机译:微塑料和氧化应激诱导的MAPK / NRF2途径介导的防御机制在海洋COPEPOD PARRICCLO​​PINA NANA中的不利影响

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Microplastic pollution causes a major concern in the marine environment due to their worldwide distribution, persistence, and adverse effects of these pollutants in the marine ecosystem. Despite its global presence, there is still a lack of information on the effect of microplastics on marine organisms at the molecular level. Herein we demonstrated ingestion and egestion of nano- (0.05?μm) and micro-sized (0.5 and 6?μm) polystyrene microbeads in the marine copepod Paracyclopina nana, and examined molecular responses to exposure to microbeads with in vivo endpoints such as growth rate and fecundity. Also, we proposed an adverse outcome pathway for microplastic exposure that covers molecular and individual levels. This study provides the first insight into the mode of action in terms of microplastic-induced oxidative stress and related signaling pathways in P. nana.
机译:由于他们在海洋生态系统中,这些污染物的全球分布,持续性和不利影响,微塑性污染导致海洋环境的主要问题。尽管存在全球存在,但仍然缺乏关于微薄在分子水平的海洋生物上的影响的信息。在本文中,我们证明了在海洋蛋白酶蛋白酶蛋白酶囊帕帕帕帕纳纳纳中的纳米(0.05μm)和微尺寸(0.5和6μm)聚苯乙烯微珠的聚苯乙烯微珠,并检查了在体内终点(如生长速率)中暴露于微珠的分子反应和繁殖力。此外,我们提出了一种用于覆盖分子和个体水平的微塑性暴露的不利结果途径。本研究提供了在P. Nana的微塑性诱导的氧化应激和相关信号通路方面进入动作模式的洞察。

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