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Nano-sized Al2O3 reduces acute toxic effects of thiacloprid on the non-biting midge Chironomus riparius

机译:纳米尺寸的Al2O3降低了噻虫啉对不咬咬的蚊虫Chironomus riparius的急性毒性作用

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摘要

This study focuses on interactions between nanoparticles and a pesticide. The aim was to investigate how nano-sized aluminum oxide (410 nm) can alter the toxic effects of thiacloprid, even if no sorption between particles and the insecticide takes place. Thus, our study investigated a rather unexplored interaction. We conducted our research with larvae of Chironomus riparius and used thiacloprid as test substance as its toxicity to C. riparius is well described. The used nano-Al2O3 particles where chosen due to their suitable properties. For testing the acute effects of the interaction, we exposed larvae to thiacloprid (0.5, 1.0, 2.0, and 5.0 μg/L) and nano-Al2O3 (300 and 1000 mg/L), either solely or in binary mixtures. While thiacloprid resulted in elevated mortality, nano-Al2O3 solely did not exert any effects. Moreover, we observed an aggregation of nano-Al2O3 within the lumen of the intestinal tract of the larvae. Further results showed a significantly reduced mortality of fourth instar larvae when they were exposed to mixtures of nanoparticles and the pesticide, compared to thiacloprid alone. With increasing nano-Al2O3 concentration, this effect became gradually stronger. Additionally, chemical analyses of internal thiacloprid concentrations implicate reduced uptake of thiacloprid in animals exposed to mixtures. However, as larvae exposed to thiacloprid concentrations > 0.5 μg/L showed severe convulsions, independent of the presence or concentration of nano-Al2O3, we assume that nano-Al2O3 leads to a delay of mortality and does not entirely prevent it. As sorption measurements on pristine or defecated nano-Al2O3 did not reveal any sorptive interaction with thiacloprid, we can exclude sorption-based reduction of thiacloprid bioavailability as a mechanism behind our results. Even though we used test substances which might not co-occur in the environment in the tested concentrations, our study gives evidence for an interaction besides adsorption, which is important to generally understand how nanoparticles might affect biota.
机译:这项研究的重点是纳米颗粒和农药之间的相互作用。目的是研究即使在颗粒和杀虫剂之间不发生吸附的情况下,纳米级氧化铝(410 nm)如何改变噻虫啉的毒性作用。因此,我们的研究调查了一种尚未探索的相互作用。我们以河豚草(Chironomus riparius)的幼虫进行了研究,并使用噻虫啉作为受试物质,因为它已很好地描述了其对河豚草(C. riparius)的毒性。所使用的纳米Al2O3颗粒由于其合适的性能而被选择。为了测试相互作用的急性作用,我们将幼虫单独或以二元混合物形式暴露于噻虫啉(0.5、1.0、2.0和5.0μg/ L)和纳米Al2O3(300和1000 mg / L)中。噻虫啉可导致较高的死亡率,而纳米Al2O3仅不发挥任何作用。此外,我们观察到了纳米Al2O3在幼虫肠道内的聚集。进一步的结果显示,与单独使用噻虫啉相比,第四龄幼虫暴露于纳米颗粒和农药的混合物时,死亡率显着降低。随着纳米Al2O3浓度的增加,这种作用逐渐增强。另外,内部噻虫啉浓度的化学分析表明,接触混合物的动物对噻虫啉的摄取减少。然而,由于暴露于噻虫啉浓度> 0.5μg/ L的幼虫显示出严重的惊厥,而与纳米Al2O3的存在或浓度无关,我们认为纳米Al2O3会导致死亡延迟,但不能完全防止死亡。由于在原始或排便后的纳米Al2O3上的吸附测量未显示与噻虫啉有任何吸附相互作用,因此我们可以排除基于吸附的噻虫啉生物利用度降低,作为我们结果背后的机制。即使我们使用的测试物质在测试浓度下可能不会在环境中共存,我们的研究仍提供了吸附以外相互作用的证据,这对于一般性地了解纳米粒子如何影响生物群很重要。

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