Eldawud Reem, Wagner Alixandra, Dong Chenbo, Rojansakul Yon, Zoica Dinu Cerasela
Department of Chemical Engineering, West Virginia University, WV 26506, United States.
Department of Basic Pharmaceutical Sciences, West Virginia University, WV 26505, United States.
Biosens Bioelectron. 2015 Sep 15;71:269-277. doi: 10.1016/j.bios.2015.04.044. Epub 2015 Apr 15.
Single-walled carbon nanotubes (SWCNTs) implementation in a variety of biomedical applications from bioimaging, to controlled drug delivery and cellular-directed alignment for muscle myofiber fabrication, has raised awareness of their potential toxicity. Nanotubes structural aspects which resemble asbestos, as well as their ability to induce cyto and genotoxicity upon interaction with biological systems by generating reactive oxygen species or inducing membrane damage, just to name a few, have led to focused efforts aimed to assess associated risks prior their user implementation. In this study, we employed a non-invasive and real-time electric cell impedance sensing (ECIS) platform to monitor behavior of lung epithelial cells upon exposure to a library of SWCNTs with user-defined physico-chemical properties. Using the natural sensitivity of the cells, we evaluated SWCNT-induced cellular changes in relation to cell attachment, cell-cell interactions and cell viability respectively. Our methods have the potential to lead to the development of standardized assays for risk assessment of other nanomaterials as well as risk differentiation based on the nanomaterials surface chemistry, purity and agglomeration state.
单壁碳纳米管(SWCNT)在从生物成像到可控药物递送以及用于肌肉肌纤维制造的细胞定向排列等各种生物医学应用中的应用,提高了人们对其潜在毒性的认识。纳米管的结构方面类似于石棉,以及它们在与生物系统相互作用时通过产生活性氧或诱导膜损伤等方式诱导细胞毒性和基因毒性的能力,仅举几例,这些都促使人们在其用户应用之前集中精力评估相关风险。在本研究中,我们采用了一种非侵入性实时电细胞阻抗传感(ECIS)平台来监测肺上皮细胞在暴露于具有用户定义物理化学性质的SWCNT库时的行为。利用细胞的天然敏感性,我们分别评估了SWCNT诱导的与细胞附着、细胞间相互作用和细胞活力相关的细胞变化。我们的方法有可能导致开发用于评估其他纳米材料风险的标准化检测方法,以及基于纳米材料表面化学、纯度和团聚状态的风险区分。