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Cationic polystyrene nanoparticle and the sea urchin immune system: biocorona formation, cell toxicity, and multixenobiotic resistance phenotype

机译:阳离子聚苯乙烯纳米粒子和海胆免疫系统:Biocorona地层,细胞毒性和多凸透肌抗性表型

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摘要

In order to assess the impact of nanoplastics on marine species, polystyrene nanoparticles (PS NPs) have been largely used as model particles. Here we studied the effects of 50nm amino-modified PS-NH2 on Mediterranean sea urchin Paracentrotus lividus immune system cells (coelomocytes) in the presence of celomic fluid (CF) and at different NP concentrations (1, 5, 10, and 25g mL(-1)) and experimental conditions (absence or presence of EDTA). PS-NH2 acquired a protein corona once incubated with CF, dominated by the toposome precursor protein (TPP). In short-term cultures, a significant concentration- and time-dependent decrease in lysosomal membrane stability and apoptotic-like nuclear alterations were observed in phagocytes upon exposure to PS-NH2 (10 and 25 mu g mL(-1)) in CF but they resulted abolished in the presence of EDTA confirming the role of TPP in triggering PS-NH2-coelomocytes interaction and toxicity. PS-NH2 did not alter MXR phenotype but the observed dose-dependent decrease in calcein accumulation suggests the ability of PS-NH2 to affect pump's efflux activity. Overall results encourage additional studies on positively charged nanoplastics, since the observed effects on sea urchin coelomocytes as well as the TPP corona formation might represent a first step for addressing their impact on sensitive marine species.
机译:为了评估纳米型纳米纳薄物对海洋物种的影响,聚苯乙烯纳米粒子(PS NPS)已大大用作模型颗粒。在这里,我们研究了在贝罗粒液(CF)存在下和不同NP浓度(1,5,10和25g( -1))和实验条件(没有或存在EDTA)。 PS-NH2获取蛋白质电晕一次与CF孵育,由拓扑体前体蛋白(TPP)为主。在短期培养物中,在CF暴露于PS-NH 2(10和25μg(-1)时,在吞噬细胞中观察到溶酶体膜稳定性和凋亡样核改变的显着浓度和时间依赖性核改变。它们在EDTA存在下被废除,确认TPP在触发PS-NH2-核细胞相互作用和毒性中的作用。 PS-NH2没有改变MXR表型,但观察到的剂量依赖性降低Calcein积累表明PS-NH2影响泵的流出活动的能力。总体结果鼓励对带正电的纳米纳薄剂的额外研究,因为观察到对海胆核细胞的影响以及TPP电晕形成可能代表解决它们对敏感海洋物种影响的第一步。

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