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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Tailoring Cyanine Dark States for Improved Optically Modulated Fluorescence Recovery
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Tailoring Cyanine Dark States for Improved Optically Modulated Fluorescence Recovery

机译:定制花菁暗态以改善光调制的荧光回收率

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摘要

Cyanine dyes are well-known for their bright fluorescence and utility in biological imaging. However, cyanines also readily photoisomerize to produce nonemissive dark states. Co-illumination with a secondary, red-shifted light source on-resonance with the longer wavelength absorbing dark state reverses the photoisomerization and returns the cyanine dye to the fluorescent manifold, increasing steady-state fluorescence intensity. Modulation of this secondary light source dynamically alters emission intensity, drastically improving detection sensitivity and facilitating fluorescence signals to be recovered from an otherwise overwhelming background. Red and near-IR emitting cyanine derivatives have been synthesized with varying alkyl chain lengths and halogen substituents to alter dual-laser fluorescence enhancement. Photophysical properties and enhancement with dual laser modulation were coupled with density functional calculations to characterize substituent effects on dark state photophysics, potentially improving detection in high background biological environments.
机译:花青染料以其明亮的荧光和在生物成像中的实用性而闻名。然而,花青还易于光异构化以产生非发光的暗态。与次级,红移光源的共照明以及更长的波长吸收暗态的共共振可以逆转光致异构化,并使花青染料返回荧光歧管,从而增加稳态荧光强度。对该次级光源的调制可动态改变发射强度,大大提高检测灵敏度,并有利于从不堪重负的背景中恢复荧光信号。已经合成了具有不同烷基链长度和卤素取代基的红色和近红外发射花青衍生物,以改变双激光荧光增强作用。将光物理特性和双激光调制增强功能与密度泛函计算相结合,以表征取代基对暗态光物理的影响,从而有可能改善在高背景生物学环境中的检测。

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