Division of Immunopathology of the Nervous System, Department of Neuropathology, Institute of Pathology and Neuropathology, University of Tuebingen, Germany.
Arch Toxicol. 2013 Apr;87(4):569-76. doi: 10.1007/s00204-012-1007-z. Epub 2013 Jan 24.
Nanomaterials are a challenge to toxicology. The high diversity of novel materials and products will require extensive expertize for evaluation and regulatory efforts. Nanomaterials are of substantial scientific and economic potential. Here, we will focus on nanosilver, a material not only with medical applications, but a rapidly increasing use in surprisingly many products. Consequently, toxicological evaluation has to cover an increasing range of complex topics. The toxicology of nanosilver is advancing rapidly; regulatory efforts by Federal Drug Agency and European Environment Protection Agencies are substantial. Current toxicological data, ranging from in vitro studies with cell lines to rodent experiments and ecological evaluation, are numerous, and many groups are providing continuously new data. However, standard classification based on nanosize only is neglecting nanoshape, which adds another level of complexity to the analysis of biological effects. A surprising neglect in nanosilver toxicology so far is the analysis of effects of nanosilver on amyloidosis. Amyloid diseases are widespread in humans and a severe health hazard. The known potential of silver to stimulate amyloidosis in rodents will require a timely and balanced evaluation of nanosilvers.
纳米材料对毒理学来说是一个挑战。新型材料和产品的高度多样性将需要广泛的专业知识来进行评估和监管工作。纳米材料具有重要的科学和经济潜力。在这里,我们将重点介绍纳米银,这是一种不仅具有医疗应用,而且在许多产品中迅速增加使用的材料。因此,毒理学评估必须涵盖越来越多的复杂主题。纳米银的毒理学研究正在迅速推进;美国联邦药物管理局和欧洲环境保护局的监管工作也在大力进行中。目前,从细胞系的体外研究到啮齿动物实验和生态评估,毒理学数据众多,许多团体不断提供新的数据。然而,仅基于纳米尺寸的标准分类忽略了纳米形状,这为分析生物效应增加了另一个复杂层面。到目前为止,纳米银毒理学中一个令人惊讶的疏忽是对纳米银对淀粉样变性影响的分析。淀粉样变性疾病在人类中广泛存在,是严重的健康危害。已知银在啮齿动物中刺激淀粉样变性的潜力,这将需要及时和平衡地评估纳米银。