Jeong Junhoe, Lee Yong-ju, Hwang Yu sik, Hong In Seok
Department of Chemistry, Kongju National University, Gongju-si, Chungnam, Republic of Korea.
Future Environmental Research Center, Korean Institute of Toxicology, Jinju, Gyeongnam, Republic of Korea.
Environ Toxicol Chem. 2015 Sep;34(9):1969-74. doi: 10.1002/etc.3035. Epub 2015 Jul 14.
Carbon nanotubes (CNTs) have been widely applied in many industrial fields. As world production of CNTs increases, the risk of environmental exposure to CNTs also increases. Therefore, to evaluate the impact on the environment, many cell and animal studies have reported on the toxicity of CNTs. It is important to determine the degree of contamination of CNTs in soil and to find the pollution pathways for assessment of the environmental toxicity of CNTs. However, selective detection methods for CNTs in soil or water have rarely been reported. In the present study, a novel technique was developed to quantify the amount of CNTs in soil mixtures using fluorescent SYBR Green I dye after isolation of the CNTs with specific DNA oligomers. As a result, a limit of detection of CNTs in soil was obtained in the range of 250 ppb. This limit can easily be extended to the level of 10 ppb using magnetic well plates with a greater capacity. This method also worked well in the presence of graphene oxide and could be applied to the detection of CNTs in a variety of surroundings (e.g., fish and other tissues).
碳纳米管(CNTs)已广泛应用于许多工业领域。随着全球碳纳米管产量的增加,环境接触碳纳米管的风险也在增加。因此,为评估其对环境的影响,许多细胞和动物研究报告了碳纳米管的毒性。确定土壤中碳纳米管的污染程度并找到污染途径对于评估碳纳米管的环境毒性很重要。然而,针对土壤或水中碳纳米管的选择性检测方法鲜有报道。在本研究中,开发了一种新技术,在用特定DNA寡聚物分离碳纳米管后,使用荧光SYBR Green I染料对土壤混合物中的碳纳米管数量进行定量。结果,土壤中碳纳米管的检测限在250 ppb范围内。使用容量更大的磁性微孔板,该检测限可轻松扩展至10 ppb水平。该方法在氧化石墨烯存在的情况下也能很好地发挥作用,并且可应用于各种环境中碳纳米管的检测(例如,鱼类和其他组织)。