Kannadorai Ravi Kumar, Chiew Geraldine Giap Ying, Luo Kathy Qian, Liu Quan
School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore 637457.
School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore 637457.
Cancer Lett. 2015 Feb 1;357(1):152-159. doi: 10.1016/j.canlet.2014.11.022. Epub 2014 Nov 15.
Gold nanorods have the potential to localize the treatment procedure by hyperthermia and influence the fluorescence. The longitudinal plasmon peak contributes to the photothermal effect by converting light to heat. When these nanorods are PEGylated, it not only makes it biocompatible but also acts as a spacer layer during fluorescence enhancement. When the PEGylated nanorods are internalized inside the cells through endocytosis, the transverse plasmonic peak combined with the enhanced absorption and scattering properties of the nanorods can enhance the autofluorescence emission intensity from the cell. The autofluorescence from the mitochondria inside cells which reflects the respiratory status of the cell was enhanced two times by the presence of nanorods within the cell. At four minutes, the nanorods incubated cells reached the hyperthermic temperature when illuminated continuously with near infrared laser. The cell viability test and autofluorescence intensity curve showed a similar trend indicating the progress of cell death over time. This is the first report to the best of our knowledge to suggest the potential of exploiting the dual capabilities of gold nanorods as photothermal agents and autofluorescence enhancer to track cell death.
金纳米棒有潜力通过热疗使治疗过程局部化并影响荧光。纵向等离子体峰通过将光转化为热来促成光热效应。当这些纳米棒聚乙二醇化时,它不仅使其具有生物相容性,还在荧光增强过程中充当间隔层。当聚乙二醇化的纳米棒通过内吞作用内化到细胞内时,横向等离子体峰与纳米棒增强的吸收和散射特性相结合,可以增强细胞的自发荧光发射强度。细胞内线粒体的自发荧光反映了细胞的呼吸状态,由于细胞内存在纳米棒,其增强了两倍。在四分钟时,用近红外激光持续照射,纳米棒孵育的细胞达到了热疗温度。细胞活力测试和自发荧光强度曲线显示出相似的趋势,表明细胞死亡随时间的进展。据我们所知,这是第一份表明利用金纳米棒作为光热剂和自发荧光增强剂的双重能力来追踪细胞死亡潜力的报告。