Amity University, Lucknow Campus, Viraj Khand 5, Lucknow-226010, UP, India.
Environ Health. 2012 Jun 28;11 Suppl 1(Suppl 1):S13. doi: 10.1186/1476-069X-11-S1-S13.
Nanoparticles (NPs) cause concern for health and safety as their impact on the environment and humans is not known. Relatively few studies have investigated the toxicological and environmental effects of exposure to naturally occurring NPs (NNPs) and man-made or engineered NPs (ENPs) that are known to have a wide variety of effects once taken up into an organism. A review of recent knowledge (between 2000-2010) on NP sources, and their behaviour, exposure and effects on the environment and humans was performed. An integrated approach was used to comprise available scientific information within an interdisciplinary logical framework, to identify knowledge gaps and to describe environment and health linkages for NNPs and ENPs. The causal diagram has been developed as a method to handle the complexity of issues on NP safety, from their exposure to the effects on the environment and health. It gives an overview of available scientific information starting with common sources of NPs and their interactions with various environmental processes that may pose threats to both human health and the environment. Effects of NNPs on dust cloud formation and decrease in sunlight intensity were found to be important environmental changes with direct and indirect implication in various human health problems. NNPs and ENPs exposure and their accumulation in biological matrices such as microbiota, plants and humans may result in various adverse effects. The impact of some NPs on human health by ROS generation was found to be one of the major causes to develop various diseases. A proposed cause-effects diagram for NPs is designed considering both NNPs and ENPs. It represents a valuable information package and user-friendly tool for various stakeholders including students, researchers and policy makers, to better understand and communicate on issues related to NPs.
纳米颗粒 (NPs) 对健康和安全造成了关注,因为人们还不清楚它们对环境和人类的影响。相对较少的研究调查了暴露于天然存在的 NPs(NNPs)和人为或工程 NPs(ENPs)的毒理学和环境影响,这些 NPs 一旦被生物体吸收,就会产生各种各样的影响。对最近(2000-2010 年)关于 NPs 来源及其行为、暴露和对环境和人类影响的知识进行了综述。采用综合方法,在跨学科逻辑框架内综合现有科学信息,以确定知识空白,并描述 NNPs 和 ENPs 的环境和健康联系。因果关系图已被开发为一种处理 NP 安全问题复杂性的方法,从暴露到对环境和健康的影响。它概述了从常见的 NPs 来源及其与可能对人类健康和环境构成威胁的各种环境过程相互作用开始的现有科学信息。NNPs 对粉尘云形成和阳光强度降低的影响被认为是重要的环境变化,对各种人类健康问题具有直接和间接影响。NNPs 和 ENPs 的暴露及其在微生物群、植物和人类等生物基质中的积累可能导致各种不良影响。一些 NPs 通过 ROS 生成对人类健康的影响被发现是导致各种疾病发展的主要原因之一。针对 NPs 提出了一个因果关系图,同时考虑了 NNPs 和 ENPs。它为包括学生、研究人员和政策制定者在内的各种利益相关者提供了有价值的信息包和用户友好的工具,以更好地理解和交流与 NPs 相关的问题。