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AQUEOUS TOXICITY AND FOOD CHAIN TRANSFER OF QUANTUM DOTS™ IN FRESHWATER ALGAE AND CERIODAPHNIA DUBIA

机译:QUANTUM DOTS™在淡水藻类和杜鹃花中的毒性和食物链转移

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摘要

Innovative research and diagnostic techniques for biological testing have advanced during recent years because of the development of semiconductor nanocrystals. Although these commercially available, fluorescent nanocrystals have a protective organic coating, the inner core contains cadmium and selenium. Because these metals have the potential for detrimental environmental effects, concerns have been raised over our lack of understanding about the environmental fate of these products. U.S. Environmental Protection Agency test protocol and fluorescence microscopy were used to determine the fate and effect of quantum dots (QDs; Qdot® 545 ITK™ Carboxyl Quantum Dots [Fisher Scientific, Fisher part Q21391MP; Invitrogen Molecular Probes, Eugene, OR, USA]) using standard aquatic test organisms. No lethality was measured following 48-h exposure of Ceriodaphnia dubia to QD suspensions as high as 110 ppb, but the 96-h median lethal concentration to Pseudokirchneriella subcapitata was measured at 37.1 ppb. Transfer of QDs from dosed algae to C. dubia was verified with fluorescence microscopy. These results indicate that coatings present on nanocrystals provide protection from metal toxicity during laboratory exposures but that the transfer of core metals from intact nanocrystals may occur at levels well above toxic threshold values, indicating the potential exposure of higher trophic levels. Studies regarding the fate and effects of nanoparticles can be incorporated into models for predictive toxicology of these emerging contaminants.
机译:由于半导体纳米晶体的发展,近年来生物检测的创新研究和诊断技术得到了发展。尽管这些市售的荧光纳米晶体具有保护性有机涂层,但内核包含镉和硒。由于这些金属可能对环境造成不利影响,因此人们对我们对这些产品的环境命运缺乏了解感到担忧。美国环境保护局的测试方案和荧光显微镜用于确定量子点的命运和作用(量子点;Qdot®545 ITK™羧基量子点[Fisher Scientific,Fisher part Q21391MP; Invitrogen Molecular Probes,Eugene,OR,美国)使用标准的水生生物。在高达110 ppb的QD悬浮液中暴露48小时后,未检测到致死性,但测定的人头假单胞菌的96小时中值致死浓度为37.1 ppb。 QDs从剂量的藻类转移到杜氏梭菌通过荧光显微镜验证。这些结果表明存在于纳米晶体上的涂层在实验室暴露期间提供了免受金属毒性的保护,但是从完整的纳米晶体中转移核心金属的程度可能远高于毒性阈值,表明较高营养级别的潜在暴露。关于纳米颗粒的命运和影响的研究可以纳入这些新兴污染物的预测毒理学模型。

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