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1.
人工纳米材料的生物效应及其对生态环境的影响   总被引:4,自引:0,他引:4  
人工纳米材料由于具有独特的物理化学性质而得到广泛的应用,其对人体健康及环境的潜在影响也已引起科学界及政府部门的关注.通过总结近年来的相关研究资料,分类归纳了目前国内外对一些常见的人工纳米材料如富勒烯、碳纳米管、量子点、二氧化钛、纳米铁材料及纳米铝材料的生物和生态效应研究,详细总结了纳米材料毒理学的研究对象、研究方法以及最新研究成果,同时分析了各种纳米材料生物毒性的可能机制,最后对纳米材料安全性今后的研究方向进行了展望.  相似文献   

2.
Nanotechnology is expected to have a beneficial influence on agriculture, food and environment, due to the unique properties of nanomaterials. However, little is known about their safety and potential toxicity. Here we review metal nanoparticles, nanometal oxides, carbon nanotubes, liposomes and dendrimers. We present the application of these nanomaterials in agriculture, food and environment for plant protection; disease treatment; packing materials; development of new tastes, textures and sensations; pathogen detection; and delivery systems. We discuss risk assessment of nanomaterials and toxicological impacts of nanomaterials on agriculture, food and environment. We then provide regulatory guidelines for the safer use of nanomaterials.  相似文献   

3.
Water shortage and pollution are serious challenges for many countries. Nanomaterials are promising new tools for water quality management due to unique physicochemical properties, high economic benefit, high removal efficiency and environmental friendliness. Here we describe four types of nanomaterials used for water treatment: nanofiltration membranes, photocatalytic nanomaterials, adsorption nanomaterials and reducing nanomaterials. We discuss their properties, applications and mechanisms for pollutant removal. We also review nanomaterials used for water quality monitoring, notably nanomaterials used for the detection of trace pollutants and pathogens. These nanomaterials include carbon nanotubes, magnetic nanoparticles, noble metal nanomaterials and quantum dots.  相似文献   

4.
典型纳米材料的土壤微生物效应研究进展   总被引:3,自引:0,他引:3  
纳米材料的大量生产和广泛应用使其不可避免地进入环境中,而土壤是人工纳米材料释放到环境的主要的汇。土壤中的微生物群落能敏感地反映土壤环境质量的变化,其对物质循环与能量转换具有极重要的生态学意义,然而纳米材料因其独特的物理化学特性,对土壤微生物群落及其功能的影响尚不明确。在参考纳米材料对微生物影响相关研究的基础上,总结了土壤中纳米材料的主要类型及来源,综述了典型纳米材料对土壤微生物群落结构、丰度、功能的影响及可能的影响机制,探讨了环境因子对人工纳米材料土壤生物效应的调控作用,对需要深入研究的方向进行了展望。  相似文献   

5.
随着纳米科技的迅猛发展,人工碳纳米材料的生产和使用逐年递增,越来越多的碳纳米材料进入水环境中,对水生生物产生毒性效应。本文在介绍了碳纳米球、石墨烯、碳纳米管3种碳纳米材料的基础上,分析了碳纳米材料的水环境行为,重点综述了碳纳米材料对水生生物毒性效应研究现状,以及可能的致毒机制,并指出今后碳纳米材料对水生生物毒理学亟待加强的研究领域。  相似文献   

6.
Nano-QSAR: 纳米毒理学领域的新方法   总被引:1,自引:0,他引:1  
随着纳米毒理学实验研究的不断深入,反映纳米材料生物毒性效应的数据也不断丰富,以这些数据为基础建立的定量结构活性关系(QSAR)模型开始发挥其在纳米材料潜在毒性研究和预测方面的作用。纳米材料的QSAR(Nano-QSAR)研究以经典QSAR模型为指导,结合纳米材料特殊的物理化学性质,提供了一种对纳米材料快速筛选和优先测试的新途径。本文就Nano-QSAR的前期研究现状,从纳米材料结构描述符、毒性效应数据和建模方法3个方面分析了模型的构建流程和框架;通过列举部分研究成果和主要的模型指标,初步探讨了建模方法的选择和结构描述符的识别;最后指出目前Nano-QSAR研究面临的挑战和今后努力的方向。  相似文献   

7.
纳米材料对藻细胞毒性效应及致毒机理   总被引:2,自引:0,他引:2  
纳米材料因其独特的性质被广泛应用于生物医疗、光学工程、催化等领域。随着纳米材料的生产量逐年增大,越来越多的纳米粒子被释放到水生生态环境中,其生态毒性效应影响也备受人们的关注。本文根据纳米材料的分类总结了不同种类纳米材料对水生生态系统的初级生产者藻类的毒性效应,归纳了纳米材料影响藻类毒性大小的主要因素,如纳米材料的物理化学性质、水体性质和藻种等,并探讨了纳米材料对藻类的致毒机理,如金属离子溶出、氧化损伤和遮光效应等,最后总结展望了纳米毒理学研究的发展方向,以期为纳米材料对藻类的毒性研究提供一定的理论依据。  相似文献   

8.
Nanomaterials are widely used in the field of engineering and in modern society. Although the unique characteristics of nanoparticles also enable them to provide environmental solutions to reduce the formation and emissions of pollutants, adverse effects on human health may occur from the exposure to nanomaterials during the manufacturing processes and when nanomaterials are released and they contaminate the environment. It is essential to understand the factors affecting the accumulation, aggregation, deposition, translocation, and distribution of nanomaterials (natural or engineered) in the ecosystem. This study presents an extensive review of the environmental effects of nanomaterials, including classification, adverse impacts on human health and the environment, transport pathways, monitoring methods, and the current regulations regarding nanomaterials. The review indicates that the diversity of nanoparticles and their properties make the identification and characterization of nanomaterials a difficult task, and an improvement in sensitivity and selectivity of analytical methods for detecting nanoparticles in the environment is required. Besides, few regulations have been established for the management of nanoparticles released into the environment. In order to expedite the environmental management of nanomaterials, this study proposes a risk assessment framework based on the findings in the review as a practice alternative for the environmental assessment and effective management of nanomaterials. Development of practical innovative risk-based management measures may help us to find answers to the concerns such as safety of engineering and applying nanomaterials and effective control of nanoparticle contamination in the environment.  相似文献   

9.
纳米材料的环境行为及其毒理学研究进展   总被引:2,自引:1,他引:1  
随着纳米科技的迅速发展,纳米材料被广泛应用于工业、农业、食品、日用品、医药等领域.在纳米材料广泛应用的同时,其不可避免地会被释放到环境中(包括水体、空气和土壤),对生态系统产生不利影响.与常规物质相比,纳米材料具有独特的物理、化学性质,其对生态系统生物种群和个体的潜在负面影响不容忽视.在总结国内外相关研究基础上,论文对纳米材料在水体、大气和土壤中的环境行为和生态毒性进行了综述.  相似文献   

10.
纳米材料是近几年应用越来越多的一种新型材料,因此国内外科研单位对其毒性的研究也逐年增加。但是目前对鼠科动物生殖毒性及其机理的了解还相对较少,亟需大量研究填补此领域的空白。本文主要从亲代和子代2个方面阐述了纳米材料对鼠科动物的生殖毒性,从不同生物水平等方面概述了纳米材料对亲子两代鼠科动物的损伤效应及可能的机制。最后,试探性地提出了今后在纳米材料领域对鼠科动物生殖毒性的研究重点。  相似文献   

11.
The European Chemical Agency (ECHA) is in the process of revising its guidance documents on how to address the challenges of ecotoxicological testing of nanomaterials. In these revisions, outset is taken in the hypothesis that ecotoxicological test methods, developed for soluble chemicals, can be made applicable to nanomaterials. European Research Council project EnvNano—Environmental Effects and Risk Evaluation of Engineered, which ran from 2011 to 2016, took another outset by assuming that: “The behaviour of nanoparticles in suspension is fundamentally different from that of chemicals in solution”. The aim of this paper is to present the findings of the EnvNano project and through these provide the scientific background for specific recommendations on how ECHA guidance could be further improved. Key EnvNano findings such as the need to characterize dispersion and dissolution rates in stock and test media have partially been addressed in the updated guidance. However, it has to be made clear that multiple characterization methods have to be applied to describe state of dispersion and dissolution over time and for various test concentration. More detailed information is called for on the specific characterization methods and techniques available and their pros and cons. Based on findings in EnvNano, we recommend that existing algal tests are supplemented with tests where suspensions of nanomaterials are aged for 1–3 days for nanomaterials that dissolve in testing media. Likewise, for daphnia tests we suggest to supplement with tests where (a) exposure is shortened to a 3 h pulse exposure in daphnia toxicity tests with environmentally hazardous metal and metal oxide nanomaterials prone to dissolution; and (b) food abundance is three to five times higher than normal, respectively. We further suggest that the importance of considering the impact of shading in algal tests is made more detailed in the guidance and that it is specified that determination of uptake, depuration and trophic transfer of nanomaterials for each commercialized functionalization of the nanomaterials is required. Finally, as an outcome of the project a method for assessing the regulatory adequacy of ecotoxicological studies of nanomaterials is proposed.  相似文献   

12.
纳米材料是"21世纪最有前途的材料",以其优良的性能广泛应用于许多领域,随之以多种形式释放到环境中。目前,关于纳米材料的安全性还没有明确的论断。本文介绍了四膜虫在纳米材料生物效应研究中的优势,重点论述了金属纳米材料、非金属纳米材料对四膜虫的生物效应以及毒性机制的研究状况,并对今后纳米材料生物毒性效应研究提供了建设性的方法及意见。  相似文献   

13.
包装材料及食品中纳米材料的检测与表征技术   总被引:1,自引:0,他引:1  
随着纳米技术的发展,纳米材料在包装行业及食品工业中得到了广泛的应用。然而,纳米材料的安全应用高度依赖于对其生物及环境效应的了解。有研究表明,纳米材料对人类健康及生态环境存在着潜在危害,这使得纳米材料的安全性成为毒理学领域的热点研究课题。同时纳米材料的安全性问题也成为纳米复合包装材料及纳米食品研究和开发的新瓶颈。在对纳米材料没有充分认识的情况下,为了消费者和生态环境的安全,必须控制包装材料及食品中纳米颗粒的种类、来源、含量及可能的释放,这就需要可靠的方法对纳米颗粒的性质和结构进行检测及表征。首先,综述了目前纳米材料在复合包装材料及食品加工中的应用,然后总结了包装材料及食品中纳米材料的检测技术及表征方法,例如显微技术、色谱分离技术、光谱与质谱技术等。由于纳米材料的理化性质参数众多,应用多种分析手段来检测和表征纳米材料成为必然。最后对目前检测技术及表征方法的不足和今后发展方向进行了探讨。  相似文献   

14.
为探讨纳米二氧化硅(Nano-SiO2)、纳米四氧化三铁(Nano-Fe3O4)和单壁碳纳米管(SWCNTs)对大鼠肝、肾的毒性效应,将49只雄性Wistar大鼠随机分为7组,包括生理盐水对照组,以及3种纳米材料的低剂量组(2mg·mL-1)和高剂量组(10mg·mL-1),采用非暴露式气管滴注法染毒,每2d染毒1次,每次每只0.2mL,共染毒5周,眼眶取血后处死大鼠,称肝、肾重量计算脏器系数,测定大鼠血清中反映肝、肾功能的生化指标,并对肝、肾进行病理学观察.结果表明,1)3种纳米材料均可导致大鼠体重明显降低,但对肝、肾脏器系数无明显影响;2)病理学观察发现,3种纳米材料均可导致大鼠肝细胞轻度脂肪变性,肾脏则无明显改变;3)3种纳米材料均可导致大鼠肝功能异常,部分肝功能指标如谷草转氨酶(AST)、碱性磷酸酶(ALP)、谷丙转氨酶(ALT)等出现显著降低;4)3种纳米材料均可导致大鼠肾功能异常,部分肾功能指标如尿酸(UA)、肌酐(CREA)、尿素氮(BUN)等出现显著升高或降低.以上结果提示,经呼吸道染毒的Nano-SiO2、Nano-Fe3O4和SWCNTs均可对大鼠肝、肾产生一定的毒性效应.  相似文献   

15.
抗生素抗性基因(antibiotic resistance genes,ARGs)的环境扩散严重威胁了人类健康和生态安全。除抗生素滥用所产生的选择性压力以外,其他环境物质也能影响ARGs的传播。而纳米材料的广泛应用使其不可避免地在环境中扩散并进而影响ARGs的环境分布。因此,笔者综述了近年来纳米材料影响ARGs污染扩散的研究,并探讨了纳米材料对ARGs传播的影响机制,旨在深入理解ARGs的环境扩散行为,为ARGs环境控制及纳米材料非毒性环境效应的评估提供理论和技术支持。  相似文献   

16.
随着纳米科技与工业的高速发展,大量的纳米材料被广泛应用并最终汇聚到土壤环境中,对土壤生态和人体健康造成潜在影响。由于土壤生物具有多样性,选择具有代表性、敏感性并便于获取的土壤模式生物作为实验受体进行纳米材料的生物安全评估及环境毒理效应研究尤为重要。较为系统地回顾和总结了几种典型土壤模式生物的特点,为纳米材料毒理研究中受试生物的选择提供参考,在此基础上整理了大量基于典型土壤模式生物的纳米材料毒性研究资料,归纳了不同层次的研究方法,分析探索了纳米材料毒性机理,并展望了未来的研究重点。  相似文献   

17.
纳米材料的环境和生态毒理学研究进展   总被引:5,自引:4,他引:1  
随着纳米技术的迅速发展及纳米材料的大量增多,纳米技术的安全性问题正引起世界范围的重点关注.纳米材料可以通过多种途径进入自然环境而产生多种环境行为,可能引起生物体的毒性效应,其生态学影响也不可忽视.目前国际上对纳米材料生态学影响特别是环境行为的研究仍处于起步阶段,有价值的研究结果非常少,仍有众多不确定的生态安全问题有待深入研究.在总结国内外相关研究的基础上,就纳米材料的来源、进入环境的途径、环境行为、生态毒理学研究现状及需要进一步研究的内容进行了简要综述.  相似文献   

18.
采用电子自旋共振光谱(EPR)技术,分析腐殖酸在光照下对4种典型碳纳米材料诱导产生单线态氧(~1O_2)和羟基自由基(·OH)的影响。基于密度泛函理论计算4种典型碳纳米材料的前线轨道能,比较了它们分别经能量转移诱导产生~1O_2的能力以及经电子传递诱导产生·OH的能力。结果显示,4种不同形状的碳纳米材料(富勒烯、单壁碳纳米管、多壁碳纳米管以及石墨烯)悬浮液在紫外光照下均无~1O_2和·OH产生。与腐殖酸共同存在下,4种碳纳米材料均显著诱导~1O_2的产生,且富勒烯和石墨烯还能光致生成·OH。协同产生~1_O2的能力大小为:单壁碳纳米管富勒烯多壁碳纳米管石墨烯,协同产生·OH的能力大小为:石墨烯富勒烯。~1O_2的产生能力与碳纳米材料的能隙大小和颗粒聚集程度有关,而诱导产生·OH的能力主要取决于化学硬度。总之,我们的研究表明腐殖酸与碳纳米颗粒可协同产生活性氧物种。  相似文献   

19.
Nanomaterials may help to solve issues such as water availability, clean energy generation, control of drug-resistant microorganisms and food safety. Here we review innovative approaches to solve these issues using nanotechnology. The major topics discussed are wastewater treatment using carbon-based, metal-based and polymeric nanoadsorbents for removing organic and metal contaminants; nanophotocatalysis for microbial control; desalination of seawater using nanomembranes; energy conversion and storage using solar cells and hydrogen-sorbents nanostructures; antimicrobial properties of nanomaterials; smart delivery systems; biocompatible nanomaterials such as nanolignocellulosis and starches-based materials, and methods to decrease the toxicity of nanomaterials. Significantly, here it is reviewed two ways to palliate nanomaterials toxicity: (a) controlling physicochemical factors affecting this toxicity in order to dispose of more safe nanomaterials, and (b) harnessing greener synthesis of them to bring down the environmental impact of toxic reagents, wastes and byproducts. All these current challenges are reviewed at the present article in an effort to evaluate environmental implications of nanomaterials technology by means of a complete, reliable and critical vision.  相似文献   

20.
Nanomaterial toxicity for plants   总被引:1,自引:0,他引:1  
  相似文献   

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