Ecotoxicity of nanoparticles.

ISRN Toxicology Pub Date : 2013-03-24 Print Date: 2013-01-01 DOI:10.1155/2013/574648
Sachindri Rana, P T Kalaichelvan
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引用次数: 95

Abstract

Nanotechnology is a science of producing and utilizing nanosized particles that are measured in nanometers. The unique size-dependent properties make the nanoparticles superior and indispensable as they show unusual physical, chemical, and properties such as conductivity, heat transfer, melting temperature, optical properties, and magnetization. Taking the advantages of these singular properties in order to develop new products is the main purpose of nanotechnology, and that is why it is regarded as “the next industrial revolution.” Although nanotechnology is quite a recent discipline, there have already high number of publications which discuss this topic. However, the safety of nanomaterials is of high priority. Whereas toxicity focuses on human beings and aims at protecting individuals, ecotoxicity looks at various trophic organism levels and intend to protect populations and ecosystems. Ecotoxicity includes natural uptake mechanisms and the influence of environmental factors on bioavailability (and thereby on toxicity). The present paper focuses on the ecotoxic effects and mechanisms of nanomaterials on microorganisms, plants, and other organisms including humans.
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纳米颗粒的生态毒性。
纳米技术是一门生产和利用以纳米为单位的纳米粒子的科学。独特的尺寸相关特性使得纳米颗粒表现出不同寻常的物理、化学和性能,如导电性、传热、熔化温度、光学性能和磁化性能,这使得纳米颗粒变得更加优越和不可或缺。利用这些独特特性的优势来开发新产品是纳米技术的主要目的,这就是为什么它被视为“下一次工业革命”。虽然纳米技术是一门相当新的学科,但已经有大量的出版物讨论了这个主题。然而,纳米材料的安全性是重中之重。毒性关注的是人类,目的是保护个人,而生态毒性关注的是各种营养有机体的水平,目的是保护种群和生态系统。生态毒性包括自然吸收机制和环境因素对生物利用度(从而对毒性)的影响。本文主要研究了纳米材料对微生物、植物和包括人类在内的其他生物的生态毒性作用及其机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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