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Stable, Bright, and Long-Fluorescence-Lifetime Dyes for Deep-Near-Infrared Bioimaging

Li, Jin; Dong, Yan; Wei, Ruwei; Jiang, Guanyu; Yao, Cheng; Lv, Meng; Wu, Yuyang; Gardner, Sarah H.; Zhang, Feng; Lucero, Melissa Y.; Huang, Jian; Chen, Hao; Ge, Guangbo; Chan, Jefferson; Chen, Jinquan; Sun, Haitao; Luo, Xiao; Qian, Xuhong; Yang, Youjun*
Science Citation Index Expanded
华东理工大学; 中国科学院

摘要

Near-infrared (NIR) fluorophores absorbing maximally in the region beyond 800 nm, i.e., deep-NIR spectral region, are actively sought for biomedical applications. Ideal dyes are bright, nontoxic, photostable, biocompatible, and easily derivatized to introduce functionalities (e.g., for bioconjugation or aqueous solubility). The rational design of such fluorophores remains a major challenge. Silicon-substituted rhodamines have been successful for bioimaging applications in the red spectral region. The longer-wavelength silicon-substituted congeners for the deep-NIR spectral region are unknown to date. We successfully prepared four silicon-substituted bis-benzannulated rhodamine dyes (ESi5a-ESi5d), with an efficient five-step cascade on a gram-scale. Because of the extensive overlapping of their HOMO-LUMO orbitals, ESi5a-ESi5d are highly absorbing (lambda(abs) approximate to 865 nm and epsilon > 10(5) cm(-1) M-1). By restraining both the rotational freedom via annulation and the vibrational freedom via silicon-imparted strain, the fluorochromic scaffold of ESi5 is highly rigid, resulting in an unusually long fluorescence lifetime (tau > 700 ps in CH2Cl2) and a high fluorescence quantum yield (phi = 0.14 in CH2Cl2). Their half-lives toward photobleaching are 2 orders of magnitude longer than the current standard (ICG in serum). They are stable in the presence of biorelevant concentration of nucleophiles or reactive oxygen species. They are minimally toxic and readily metabolized. Upon tail vein injection of ESi5a (as an example), the vasculature of a nude mouse was imaged with a high signal-to-background ratio. ESi5 dyes have broad potentials for bioimaging in the deep-NIR spectral region.

关键词

IN-VIVO POLYMETHINE DYES ORGANIC FLUOROPHORES ABSORPTION-SPECTRA II FLUOROPHORES CYANINE DYE RHODAMINE NANOPARTICLES EMISSION DESIGN