El-Ansary A, Al-Daihan S
Biochemistry Department, Science College, King Saud University, P.O. Box 22452, Riyadh 11451, Saudi Arabia.
J Toxicol. 2009;2009:754810. doi: 10.1155/2009/754810. Epub 2009 Jan 25.
Human beings have been exposed to airborne nanosized particles throughout their evolutionary stages, and such exposures have increased dramatically over the last century. The rapidly developing field of nanotechnology will result in new sources of this exposure, through inhalation, ingestion, and injection. Although nanomaterials are currently being widely used in modern technology, there is a serious lack of information concerning the human health and environmental implications of manufactured nanomaterials. Since these are relatively new particles, it is necessary to investigate their toxicological behavior. The objective of this review was to trace the cellular response to nanosized particle exposure. Therapeutic application of selected nanoparticles together with their range of toxic doses was also reviewed. Effect of therapeutically used nanoparticles on cell membrane, mitochondrial function, prooxidant/antioxidant status, enzyme leakage, DNA, and other biochemical endpoints was elucidated. This paper highlights the need for caution during the use and disposal of such manufactured nanomaterials to prevent unintended environmental impacts.
在人类的整个进化阶段,都暴露于空气中的纳米级颗粒,并且在过去的一个世纪中,这种暴露显著增加。快速发展的纳米技术领域将通过吸入、摄入和注射导致这种暴露的新来源。尽管纳米材料目前在现代技术中被广泛使用,但关于人造纳米材料对人类健康和环境影响的信息严重匮乏。由于这些是相对较新的颗粒,有必要研究它们的毒理学行为。这篇综述的目的是追踪细胞对纳米级颗粒暴露的反应。还综述了选定纳米颗粒的治疗应用及其毒性剂量范围。阐明了治疗用纳米颗粒对细胞膜、线粒体功能、促氧化剂/抗氧化剂状态、酶泄漏、DNA和其他生化终点的影响。本文强调在使用和处置此类人造纳米材料时需要谨慎,以防止意外的环境影响。