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工程纳米材料的内毒素污染。

Endotoxin contamination of engineered nanomaterials.

机构信息

Research Triangle Institute International, 3040 Cornwallis Road, Research Triangle Park, NC 27709, USA.

出版信息

Nanotoxicology. 2010 Mar;4(1):73-83. doi: 10.3109/17435390903428851.

Abstract

Endotoxin has established health impacts and may be a potential confounding factor in toxicity studies of engineered nanomaterials (ENM). We aimed to characterize endotoxin contamination for a representative set of carbon-based ENM. The established method for quantifying endotoxin relies on its activity in a complex biochemical assay system. Because of their physical and chemical properties, measurement of endotoxin associated with many ENM presents non-trivial technical challenges. We have made progress in identifying and implementing methods for ENM analysis with respect to endotoxin content, revealing varying levels of endotoxin contamination in the ENM examined here. The physical association of ENM and endotoxin and their shared physiological effects suggest the possibility that contaminating endotoxin may contribute to the toxicity that is ascribed to ENM. We found in this small number of samples that endotoxin levels were not related to type of ENM or surface area but may be introduced randomly during manufacture.

摘要

内毒素已被证实对健康具有影响,并且可能是工程纳米材料 (ENM) 毒性研究中的一个潜在混杂因素。我们旨在对一组有代表性的碳基 ENM 进行内毒素污染特征描述。目前用于定量内毒素的方法依赖于其在复杂生化分析系统中的活性。由于其物理和化学性质,许多 ENM 相关内毒素的测量存在着重大的技术挑战。我们已经在确定和实施针对 ENM 分析的方法方面取得了进展,这些方法涉及内毒素含量,揭示了在此处检查的 ENM 中存在不同程度的内毒素污染。ENM 和内毒素的物理结合及其共同的生理效应表明,污染的内毒素可能导致归因于 ENM 的毒性。我们在这一小部分样本中发现,内毒素水平与 ENM 类型或表面积无关,但可能是在制造过程中随机引入的。

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