Sinha Sudarson Sekhar, Paul Dilip K, Kanchanapally Rajashekhar, Pramanik Avijit, Chavva Suhash Reddy, Viraka Nellore Bhanu Priya, Jones Stacy J, Ray Paresh Chandra
Department of Chemistry and Biochemistry , Jackson State University , Jackson , MS , USA . Email:
Chem Sci. 2015 Apr 1;6(4):2411-2418. doi: 10.1039/c4sc03843f. Epub 2015 Feb 3.
Optical rulers have served as a key tool for scientists from different disciplines to address a wide range of biological activity. Since the optical window of state of the art FRET rulers is limited to a 10 nm distance, developing long range optical rulers is very important to monitor real life biological processes. Driven by this need, the current manuscript reports for the first time the design of long-range two-photon scattering (TPS) spectroscopy rulers using gold nano-antenna separated by a bifunctional rigid double strand DNA molecule, which controls the spectroscopy ruler length. Reported data demonstrate that the TPS spectroscopy ruler's working window is a within a 25 nm distance, which is more than twice that of well recognized FRET optical ruler. A possible mechanism for the two-photon spectroscopy ruler's long range capability have been discussed using angle-resolved TPS measurement and FDTD simulations. Solution-phase experimental data demonstrated that a long-range TPS ruler using A9 aptamer can be used for the screening of prostate-specific membrane antigen (PSMA) (+) prostate cancer cells even at 5 cells per mL level. Reported result with PSMA (-) normal skin HaCaT cells indicate that TPS ruler based assay has the capability to enable distinction from non-targeted cell lines. Ultimately, the long range TPS ruler can be used towards better understanding of chemical and biological processes.
光学尺一直是不同学科科学家用于研究广泛生物活性的关键工具。由于现有荧光共振能量转移(FRET)尺的光学窗口限制在10纳米的距离内,开发长程光学尺对于监测实际生物过程非常重要。受此需求驱动,当前手稿首次报道了使用由双功能刚性双链DNA分子隔开的金纳米天线设计的长程双光子散射(TPS)光谱尺,该分子控制光谱尺的长度。报道的数据表明,TPS光谱尺的工作窗口在25纳米的距离内,这是公认的FRET光学尺的两倍多。利用角分辨TPS测量和时域有限差分(FDTD)模拟讨论了双光子光谱尺长程能力的可能机制。溶液相实验数据表明,使用A9适配体的长程TPS尺即使在每毫升5个细胞的水平下也可用于筛选前列腺特异性膜抗原(PSMA)(+)前列腺癌细胞。对PSMA(-)正常皮肤HaCaT细胞的报道结果表明,基于TPS尺的检测方法有能力区分非靶向细胞系。最终,长程TPS尺可用于更好地理解化学和生物过程。