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Immunomodulation by Different Types of N-Oxides in the Hemocytes of the Marine Bivalve Mytilus galloprovincialis

机译:不同类型的N-氧化物在海洋双壳双歧Mytilus galloprovincialis的血细胞中的免疫调节

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摘要

The potential toxicity of engineered nanoparticles (NPs) for humans and the environment represents an emerging issue. Since the aquatic environment represents the ultimate sink for NP deposition, the development of suitable assays is needed to evaluate the potential impact of NPs on aquatic biota. The immune system is a sensitive target for NPs, and conservation of innate immunity represents an useful basis for studying common biological responses to NPs. Suspension-feeding invertebrates, such as bivalves, are particularly at risk to NP exposure, since they have extremely developed systems for uptake of nano and microscale particles integral to intracellular digestion and cellular immunity. Evaluation of the effects of NPs on functional parameters of bivalve immunocytes, the hemocytes, may help understanding the major toxic mechanisms and modes of actions that could be relevant for different NP types in aquatic organisms.In this work, a battery of assays was applied to the hemocytes of the marine bivalve Mytilus galloprovincialis to compare the in vitro effects of different n-oxides (n-TiO2, n-SiO2, n-ZnO, n-CeO2) chosen on the basis of their commercial and environmental relevance. Physico-chemical characterization of both primary particles and NP suspensions in artificial sea water-ASW was performed. Hemocyte lysosomal and mitochondrial parameters, oxyradical and nitric oxide production, phagocytic activity, as well as NP uptake, were evaluated. The results show that different n-oxides rapidly elicited differential responses hemocytes in relation to their chemical properties, concentration, behavior in sea water, and interactions with subcellular compartments. These represent the most extensive data so far available on the effects of NPs in the cells of aquatic organisms. The results indicate that Mytilus hemocytes can be utilized as a suitable model for screening the potential effects of NPs in the cells of aquatic invertebrates, and may provide a basis for future experimental work for designing environmentally safer nanomaterials.
机译:工程纳米颗粒(NPs)对人类和环境的潜在毒性代表了一个新出现的问题。由于水生环境是NP沉积的最终汇聚区,因此需要开发合适的测定方法来评估NP对水生生物的潜在影响。免疫系统是NPs的敏感靶标,固有免疫力的保守性是研究NPs常见生物学反应的有用基础。悬浮喂养的无脊椎动物,例如双壳类动物,特别容易受到NP的威胁,因为它们具有非常发达的系统,可以吸收细胞内消化和细胞免疫所必需的纳米和微米级颗粒。评估NP对双壳类免疫细胞(血细胞)功能参数的影响可能有助于了解可能与水生生物中不同NP类型有关的主要毒性机制和作用方式。在这项工作中,将一系列检测方法应用于的海洋双壳类比目鱼Mytilus galloprovincialis的血细胞,以比较根据其商业和环境相关性选择的不同n-氧化物(n-TiO2,n-SiO2,n-ZnO,n-CeO2)的体外作用。进行了人工海水-ASW中初级粒子和NP悬浮液的理化表征。评估了血细胞溶酶体和线粒体参数,氧自由基和一氧化氮生成,吞噬活性以及NP吸收。结果表明,不同的正氧化物会迅速引起血细胞与其化学性质,浓度,海水行为以及与亚细胞区室的相互作用有关的差异反应。这些代表了迄今为止有关NP在水生生物细胞中作用的最广泛的数据。结果表明,Mytilus血细胞可以用作筛选NPs在水生无脊椎动物细胞中的潜在作用的合适模型,并且可以为设计更环保的纳米材料的未来实验工作提供基础。

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