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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Combining Optical Trapping and Single-Molecule Fluorescence Spectroscopy:Enhanced Photobleaching of Fluorophores
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Combining Optical Trapping and Single-Molecule Fluorescence Spectroscopy:Enhanced Photobleaching of Fluorophores

机译:光学陷印和单分子荧光光谱相结合:增强荧光团的光漂白

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摘要

To obtain high-resolution information on position or conformation of a molecule and at the same time apply forces to it,one can combine optical trapping with single-molecule fluorescence microscopy.The technical challenge in such an experiment is to discriminate a minute fluorescence signal from the much larger background signals caused by the trap and the fluorescence excitation laser light.We show here that this is feasible even when the fluorophore is directly attached to the trapped particle,by using optimized optical filters.We found,however,that the photostability of the fluorophores we tested suffered from the presence of the additional laser light used for trapping.We found that bleaching rates increased linearly with both the intensity of the trapping laser and the intensity of the fluorescence excitation light.Photobleaching rates were unaffected by the presence or absence of oxygen,but were significantly diminished in the presence of antioxidants.Our results indicate that the enhanced photobleaching is caused by the absorption of a visible photon followed by the excited-state absorption of a near-infrared photon.The higher excited singlet states generated in this way readily form nonfluorescent dye cations.We found that different dyes suffer to a different extent from the excited-state absorption,with Cy3 being worst and tetramethylrhodamine least affected.
机译:为了获得有关分子位置或构象的高分辨率信息并同时对其施加作用力,可以将光阱技术与单分子荧光显微镜相结合。这种实验中的技术挑战是区分微小的荧光信号。由陷阱和荧光激发激光产生的背景信号要大得多。我们在这里表明,即使使用优化的光学滤光镜,即使将荧光团直接附着到捕获的颗粒上,这也是可行的。但是,我们发现,我们测试的荧光团遭受了用于捕获的附加激光的影响。我们发现漂白速率随捕获激光的强度和荧光激发光的强度线性增加。光漂白速率不受存在或不受影响的影响的氧气,但在抗氧化剂的存在下明显减少。我们的结果表明可见光子的吸收随后是近红外光子的激发态吸收引起光漂白的增强,以这种方式产生的较高激发单重态很容易形成非荧光染料阳离子。我们发现不同的染料会遭受不同的影响从激发态吸收的角度来看,Cy3最差,而四甲基若丹明受影响最小。

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