Racknor Chris, Singh Mahi R, Zhang Yinan, Birch David J S, Chen Yu
Department of Physics and Astronomy, Western University, London, ON, N6A 3K7, Canada.
Methods Appl Fluoresc. 2013 Nov 15;2(1):015002. doi: 10.1088/2050-6120/2/1/015002.
We have demonstrated energy transfer between a biological labelling dye (Alexa Fluor 405) and gold nanorods experimentally and theoretically. The fluorescence lifetime imaging microscopy and density matrix method are used to study a hybrid system of dye and nanorods under one- and two-photon excitations. Energy transfer between dye and nanorods via the dipole-dipole interaction is found to cause a decrease in the fluorescence lifetime change. Enhanced energy transfer from dye to nanorods is measured in the presence of an increased density of nanorods. This study has potential applications in fluorescence lifetime-based intra-cellular sensing of bio-analytes as well as nuclear targeting cancer therapy.
我们已经通过实验和理论证明了生物标记染料(Alexa Fluor 405)与金纳米棒之间的能量转移。利用荧光寿命成像显微镜和密度矩阵方法研究了染料和纳米棒在单光子和双光子激发下的混合体系。发现染料与纳米棒之间通过偶极-偶极相互作用的能量转移会导致荧光寿命变化减小。在纳米棒密度增加的情况下,测量到染料向纳米棒的能量转移增强。该研究在基于荧光寿命的生物分析物细胞内传感以及核靶向癌症治疗方面具有潜在应用。