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来自荧光蛋白晶体的激光发射。

Lasing from fluorescent protein crystals.

作者信息

Oh Heon Jeong, Gather Malte C, Song Ji-Joon, Yun Seok Hyun

出版信息

Opt Express. 2014 Dec 15;22(25):31411-6. doi: 10.1364/OE.22.031411.

Abstract

We investigated fluorescent protein crystals for potential photonic applications, for the first time to our knowledge. Rod-shaped crystals of enhanced green fluorescent protein (EGFP) were synthesized, with diameters of 0.5-2 μm and lengths of 100-200 μm. The crystals exhibit minimal light scattering due to their ordered structure and generate substantially higher fluorescence intensity than EGFP or dye molecules in solutions. The magnitude of concentration quenching in EGFP crystals was measured to be about 7-10 dB. Upon optical pumping at 485 nm, individual EGFP crystals located between dichroic mirrors generated laser emission with a single-mode spectral line at 513 nm. Our results demonstrate the potential of protein crystals as novel optical elements for self-assembled, micro- or nano-lasers and amplifiers in aqueous environment.

摘要

据我们所知,我们首次对用于潜在光子应用的荧光蛋白晶体进行了研究。合成了增强型绿色荧光蛋白(EGFP)的棒状晶体,其直径为0.5 - 2μm,长度为100 - 200μm。由于其有序结构,这些晶体表现出最小的光散射,并且比溶液中的EGFP或染料分子产生的荧光强度高得多。测量得出EGFP晶体中的浓度猝灭幅度约为7 - 10dB。在485nm光泵浦下,位于二向色镜之间的单个EGFP晶体产生了在513nm处具有单模光谱线的激光发射。我们的结果证明了蛋白质晶体作为水性环境中自组装微纳激光器和放大器的新型光学元件的潜力。

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