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Ecotoxicological impacts of exposure to copper oxide nanoparticles on the gill of the Swan mussel, Anodonta cygnea (Linnaeus, 1758)

机译:对氧化铜氧化铜纳米粒子的生态毒理毒理学影响在南甘露群岛吞咽玉米菌,anodonta cygnea(Linnaeus,1758)

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摘要

This study was conducted to investigate the ecotoxicologicai effects of exposure to copper oxide nanoparticles (CuO NPs) on the gill of the swan mussel Anodonta cygnea using several approaches including qualitative and quantitative histopathology, ultra-morphology (scanning electron microscopy [SEMI) and measures of clearance rate (CR) and bioaccumulation of CuO NPs. Histological alterations in mussels exposed to 0.25 (T1), 2.5 (T2) and 25.0 mu g L-1 (T3) CuO NPs for 12 days include changes in the length and form of gill lamellae, changes in inter-lamellar spaces, epithelial hyperplasia, atrophy and tissue rupture. Ultra-morphological changes following CuO NP exposure included epithelial hyperplasia and hypertrophy, epithelial lifting, tissue rupture (water channel fusion) and extensive necrosis of the gill surfaces. l(Gill) (gill damage severity) index values for both histopathological and ultra-morphological data were significantly (P0.05) higher in T3. The CR of mussels was significantly (P0.05) lower in the highest exposure concentration (CR = 39.21 +/- 16.85 [L min(-1) g(-1 )dry weight]) in comparison to controls (CR = 108 +/- 47.14 [L min(-1) g(-1 )dry weight]). CuO NPs accumulated in exposed mussels at all exposure concentrations until day 4, but there was no further change in accumulation levels by the end of the exposure period. The accumulated content of CuO NPs was significantly (P 0.05) lower in 25.0 mu g L-1 exposure concentration. Based on these results, significant accumulation of CuO NPs in the gills of swan mussel could affect histological and ultra-structural characteristics of this organ and consequently have deleterious impacts on its filtration activity.
机译:进行该研究以研究使用包括定性和定量组织病理学,超形态(扫描电子显微镜[半)和措施CUO NPS的清关率(CR)和生物累积。暴露于0.25(t1),2.5(t2)和25.0μg1-1(t3)Cuo nps的贻贝中的组织学改变为12天,包括鳃薄片的长度和形式的变化,层间隙间隔内的变化,上皮增生,萎缩和组织破裂。 Cuo NP暴露后的超形态变化包括上皮增生和肥大,上皮提升,组织破裂(水通道融合)和鳃表面的广泛坏死。 L(鳃)(鳃伤害严重程度)T3的组织病理学和超形态数据的指标值显着(p <0.05)。与对照组相比,贻贝的CR显着(P <0.05)较低,较高曝光浓度(Cr = 39.21 +/- 16.85 [L min(-1)g(-1)干重])(Cr = 108 + / - 47.14 [L min(-1)g(-1)干重])。 CuO NPS在所有曝光浓度下累积在暴露的贻贝中,直到第4天,但在暴露期结束时没有进一步变化。 CuO NP的累积含量显着(p <0.05),较低25.0μgl-1曝光浓度。基于这些结果,Cuo NPS在天鹅贻贝鳃中的大量积累可能影响该器官的组织学和超结构特征,因此对其过滤活动产生有害影响。

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