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首页> 外文期刊>Angewandte Chemie >An Efficient 1064 nm NIR-II Excitation Fluorescent Molecular Dye for Deep-Tissue High-Resolution Dynamic Bioimaging
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An Efficient 1064 nm NIR-II Excitation Fluorescent Molecular Dye for Deep-Tissue High-Resolution Dynamic Bioimaging

机译:一种高效的1064nm Nir-II激发荧光分子染料,用于深组织高分辨率动态生物成像

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摘要

A small-molecule fluorophore FD-1080 with both excitation and emission in the NIR-II region has been successfully synthesized for invivo imaging. A heptamethine structure is designed to shift the absorption and emission into NIR-II region. Sulphonic and cyclohexene groups are introduced to enhance its water solubility and stability. The quantum yield of FD-1080 is 0.31%, and can be increased to 5.94% after combining with fetal bovine serum (FBS). Significantly, 1064nm NIR-II excitation was demonstrated with the high tissue penetration depth and superior imaging resolution compared to previously reported NIR excitation from 650nm to 980nm. FD-1080 is not only capable of realizing non-invasive high-resolution deep-tissue hindlimb vasculature and brain vessel bioimaging, but also quantifying the respiratory rate based on the dynamic imaging of respiratory craniocaudal motion of the liver for the awake and anaesthetized mouse.
机译:对于Invivo成像成功地合成了NIR-II区域中的激发和发射的小分子荧光团FD-1080。 庚烷结构旨在将吸收和发射转移到NiR-II区域。 引入磺和环己烯基团以增强其水溶性和稳定性。 FD-1080的量子产率为0.31%,与胎牛血清(FBS)组合后,可以增加至5.94%。 显着地,与先前报道的650nm至980nm相比,通过高组织渗透深度和优异的成像分辨率来证明1064nm的Nir-II激发。 FD-1080不仅能够实现无侵入性高分辨率深组织后肢脉管脉管系统和脑血管生物体,还基于肝脏呼吸道颅脑运动的动态成像来定量呼吸率,为令人醒着和麻醉的小鼠的呼吸道颅脑运动。

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