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用于筛选前列腺癌细胞的远程双光子散射光谱尺

Long-range two-photon scattering spectroscopy ruler for screening prostate cancer cells.

作者信息

Sinha Sudarson Sekhar, Paul Dilip K, Kanchanapally Rajashekhar, Pramanik Avijit, Chavva Suhash Reddy, Viraka Nellore Bhanu Priya, Jones Stacy J, Ray Paresh Chandra

机构信息

Department of Chemistry and Biochemistry , Jackson State University , Jackson , MS , USA . Email:

出版信息

Chem Sci. 2015 Apr 1;6(4):2411-2418. doi: 10.1039/c4sc03843f. Epub 2015 Feb 3.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d44/5646206/2783ffc88cb2/c4sc03843f-s1.jpg

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