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人工纳米颗粒对水生生物的毒性效应及其机制研究进展   总被引:7,自引:2,他引:5  
随着纳米科技的飞速发展和纳米产品的普及,人工纳米颗粒(NPs)的生物毒性效应研究逐渐成为国内外关注的热点.以水环境和水生生物为对象,综述了近几年来NPs对水生生物的毒性效应、毒性机制等方面的研究进展.文中按NPs的分类总结了NPs对微生物、藻类、原生动物和鱼类等水生生物的毒性效应,着重论述了NPs的可能毒性机制及其与NPs的独特物理化学性质之间的关系,并在细胞和分子水平上探讨了NPs的摄取、跨膜运输等方面的可能机制.在自然水体中,NPs因其化学行为受水化学条件等影响而表现出不同于实验室研究中的生物毒性效应,本文也对这方面的研究进行了讨论和总结.最后分析了目前水生生物纳米毒性研究中的瓶颈和方法、技术方面的问题,并对以后应注重开展的研究进行了展望.  相似文献   
2.
人工纳米颗粒的植物毒性及其在植物中的吸收和累积   总被引:7,自引:0,他引:7  
人工纳米颗粒(engineered nanoparticles,ENPs)在被广泛应用的同时,其潜在的环境风险和对健康的影响引起国内外的广泛重视。植物是人们的主要食物来源,ENPs可能被植物吸收并累积在可食部分,随食物链进入人体而引起健康风险。因此,ENPs的植物毒性及其在植物中的吸收和累积受到越来越多的关注。总结了ENPs的植物毒性及植物对ENPs的吸收、运输和累积,讨论了可能的致毒机制、影响其毒性的因素以及植物的解毒机制,并对未来应该注重开展的研究进行了展望。  相似文献   
3.
丛枝菌根影响纳米ZnO对玉米的生物效应   总被引:2,自引:2,他引:0  
王卫中  王发园  李帅  刘雪琴 《环境科学》2014,35(8):3135-3141
人工纳米颗粒(engineered nanoparticles,ENPs)能被植物吸收、积累,随食物链进入人体而引起健康风险.丛枝菌根(arbuscular mycorrhizal,AM)真菌可与陆地生态系统中绝大多数高等植物互惠共生,可能影响ENPs的生物效应.在温室土壤盆栽条件下研究了施加不同水平纳米ZnO(0、500、1000、2000、3000 mg·kg-1)和接种AM真菌Acaulospora mellea对玉米生长和营养状况的影响.结果表明,随土壤中纳米ZnO施加水平的增加,菌根侵染率和玉米生物量均呈降低趋势,根系总长、总表面积及总体积降低,植株体内Zn含量和吸收量逐渐增加,地上部分P、N、K、Fe、Cu吸收量逐渐降低.与对照相比,接种AM真菌均促进玉米的生长,改善P、N、K营养,根系总长、总表面积及总体积增加,并在施加纳米ZnO时增加Zn在玉米根系中的分配比例.本结果首次表明,土壤中纳米ZnO对丛枝菌根具有一定毒性,而接种AM真菌能够减轻其毒性,对宿主植物起到保护作用.  相似文献   
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The effects of two carbon-based nanomaterials, nano-sized carbon black (nCB), and single-layer graphene oxide (GO) on settlement of Amphibalanus amphitrite (Cirripedia, Crustacea) cypris larvae (cyprids) were assessed after 24, 48, and 72 h of exposure. Additionally, the effects of these nanomaterials on the mortality and swimming behaviour of the nauplius larvae (nauplii) of the same organism were determined after 24 and 48 h. The data indicate that nCB is more effective as a potential antisettlement agent than single-layer GO; moreover, nCB did not show any adverse effects on the larvae. The swimming behaviour of II stage nauplii of A. amphitrite exposed to a suspension of nCB was inhibited only at very high nCB concentrations (≥0.5 mg/mL). Single-layer GO, on the contrary, showed lower antisettlement effects and was more active in altering the survival and inhibiting the swimming behaviour of the nauplii. An indication of the toxic or non-toxic mechanisms of the antisettlement properties of both of these nanomaterials is provided by the reversibility of the antisettlement activity. In conclusion, we propose nCB as an innovative antifouling nanomaterial that shows low toxicity towards the model organism (crustaceans) used in this study.  相似文献   
5.
Yttrium oxide nanoflowers were prepared by a hydrothermal technique, and X-ray diffraction and scanning electron microscopy were used to determine their structures. The cytotoxic and genotoxic potentials of aqueous dispersions of the nanoflowers to cultured primary rat hepatocytes were examined at concentrations up to 500 mg L?1 for 72 h. Cell viability was determined by monitoring the reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide, release of lactate dehydrogenase, and uptake of neutral red. Genotoxicity was assessed by the liver micronucleus assay. Exposure to Y2O3 nanoflowers at concentrations lower than 100 mg L?1 did not lead to any cytotoxicity or genotoxicity. At higher concentrations (200, 400, and 500 mg L?1), cell viability decreased and induction of micronuclei increased (400 and 500 mg L?1).  相似文献   
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