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首页> 外文期刊>Aquatic Toxicology >Advances on assessing nanotoxicity in marine fish - the pros and cons of combining an ex vivo approach and histopathological analysis in gills
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Advances on assessing nanotoxicity in marine fish - the pros and cons of combining an ex vivo approach and histopathological analysis in gills

机译:评估海洋鱼类纳米毒性的进展 - 结合前体内方法和鳃组织病理学分析的优缺点

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摘要

The need to overcome logistic and ethical limitations of in vivo nanotoxicity evaluation in marine organisms is essential, mostly when dealing with fish. It is well established that medium/solvent conditions affect dispersion and agglomeration of nanoparticles (NPs), which represents a constraint towards a solid and realistic toxicity appraisal. In this way the pros and cons of an ex vivo approach, using a simplified exposure medium (seawater) and addressing gills histopathology, were explored. The nanotoxic potential of environmentally realistic concentrations of titanium dioxide NPs (TiO2 NPs) was also assessed, disclosing the morpho-functional effects on the gills and the possible uptake/elimination processes. Excised gills of the Senegalese sole (Solea senegalensis) were directly exposed in artificial seawater to 20 and 200 mu g L-1 TiO2 NPs, for 2 h and 4 h. Semi-quantitative and quantitative histological analyses were applied. The normal morphology of the gill's epithelia was only slightly altered in the control, reflecting protective mechanisms against the artificiality of the experimental conditions, which, together with the absence of differences in the global histopathological index (I-h), corroborated that the gill's morpho-functional features were not compromised, thereby validating the proposed ex vivo approach. TiO2 NPs induced moderate severity and dissemination of histopathological lesions. After 2 h, a series of compensatory mechanisms occurred in NP treatments, implying an efficient response of the innate defense system (increasing number of goblet cells) and effective osmoregulatory ability (chloride cells proliferation). After 4 h, gills revealed signs of recovery (normalization of the number of chloride and goblet cells; similar I-h), highlighting the tissue viability and effective elimination and/or neutralization of NPs. The uptake of the TiO2 NPs seemed to be favored by the higher particle sizes. Overall, the proposed approach emerged as a high-throughput, reliable, accurate and ethically commendable methodology for nanotoxicity assessment in marine fish.
机译:需要克服在海洋生物中体内纳米毒性评估的物流和伦理限制是必不可少的,主要是在处理鱼时。培养基/溶剂条件很好地建立了纳米颗粒(NPS)的分散和附聚,这代表了朝着固体和现实毒性评估的约束。以这种方式,探讨了使用简化的曝光培养基(海水)和寻址鳃组织病理学的前体内方法的优缺点。还评估了对二氧化钛NPS(TiO2 NPS)的环保浓度的纳米毒性潜力,公开了对鳃和可能的摄取/消除过程的情况效果。塞内加尔唯一(SOLEA SENEGALENSIS)的切除鳃直接暴露于人工海水至20和200μg1-1TiO2 NPS,2小时和4小时。施用半定量和定量组织学分析。鳃上皮的正常形态仅在控制中略微改变,反映了对实验条件的人工度的保护机制,与全球性组织病理指数(IH)的没有差异一起,证实了吉尔的Morpho功能特征没有受到损害,从而验证提出的离体方法。 TiO2 NPS诱导中等严重程度和组织病理病变的传播。 2小时后,NP治疗中发生了一系列补偿机制,暗示了先天防御系统的有效响应(越来越多的老虎粒细胞)和有效的OsMoregulatory能力(氯化物细胞增殖)。 4小时后,鳃透露回收迹象(氯化物和杯状细胞的正常化;类似的I-H),突出显示组织活力并有效地消除NPS的消除和/或中和。 TiO2 NP的吸收似乎受到更高粒径的青睐。总体而言,拟议的方法被出现为海洋鱼类中的纳米毒性评估的高通量,可靠,准确和道德和道德上值得称道的方法。

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