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Highly luminescent biocompatible ytterbium(iii) complexes as near-infrared fluorophores for living cell imaging

机译:高发光生物相容性(iii)复合物作为活细胞成像的近红外荧光团

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摘要

Herein, we report the design and synthesis of biocompatible Yb3+ complexes for near-infrared (NIR) living cell imaging. Upon excitation at either the visible (Soret band) or red region (Q band), these β-fluorinated Yb3+ complexes display high NIR luminescence (quantum yields up to 23% and 13% in dimethyl sulfoxide and water, respectively) and have higher stabilities and prolonged decay lifetimes (up to 249 μs) compared to the β-non-fluorinated counterparts. This renders the β-fluorinated Yb3+ complexes as a new class of biological optical probes in both steady-state imaging and time-resolved fluorescence lifetime imaging (FLIM). NIR confocal fluorescence images showed strong and specific intracellular Yb3+ luminescence signals when the biocompatible Yb3+ complexes were uptaken into the living cells. Importantly, FLIM measurements showed an intracellular lifetime distribution between 100 and 200 μs, allowing an effective discrimination from cell autofluorescence, and afforded high signal-to-noise ratios as firstly demonstrated in the NIR region. These results demonstrated the prospects of NIR lanthanide complexes as biological probes for NIR steady-state fluorescence and time-resolved fluorescence lifetime imaging.
机译:本文中,我们报道了用于近红外(NIR)活细胞成像的生物相容性Yb 3 + 复合物的设计和合成。这些β-氟化的Yb 3 + 络合物在可见光区(Soret带)或红色区(Q带)激发后,显示出高NIR发光(在二甲基亚砜中量子产率分别高达23%和13%)分别与水和水相比)具有更高的稳定性和更长的衰减寿命(高达249μs),与β-非氟化物相比。这使得β-氟化的Yb 3 + 络合物成为稳态成像和时间分辨荧光寿命成像(FLIM)中的一类新型生物光学探针。当生物相容的Yb 3 + 复合物被摄取到活细胞中时,NIR共聚焦荧光图像显示出强而特异性的细胞内Yb 3 + 发光信号。重要的是,FLIM测量显示细胞内寿命分布在100到200μs之间,从而可以有效区分细胞自发荧光,并提供了高信噪比,这首先在NIR区域得到证实。这些结果证明了近红外镧系配合物作为近红外稳态荧光和时间分辨荧光寿命成像的生物探针的前景。

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