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Amine-Reactive Fluorene Probes: Synthesis Optical Characterization Bioconjugation and Two-Photon Fluorescence Imaging

机译:胺反应性芴探针:合成光学表征生物共轭和双光子荧光成像

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摘要

With the increasing demand for confocal and two-photon fluorescence imaging, the availability of reactive probes that possess high two-photon absorptivity, high fluorescence quantum yield, and high photostability is of paramount importance. To address the demand for better-performing probes, we prepared two-photon absorbing amine-reactive fluorenyl-based probes 2-(9,9-bis(2-(2-methoxyethoxy)ethyl)-2-isothiocyanato-9H-fluoren-7-yl)benzothiazole (>1) and 2-(4-(2-(9,9-bis(2-(2-ethoxyethoxy)ethyl)-2-isothiocyanato-9H-fluoren-7-yl)vinyl)phenyl)benzothiazole (>2), incorporating the isothiocyanate as a reactive linker. Probe design was augmented by integrating high optical nonlinearities, increased hydrophilicity, and coupling with reactive functional groups for specific targeting of biomolecules, assuring a better impact on two-photon fluorescence microscopy (2PFM) imaging. The isothiocyanate (NCS) derivatives were conjugated with cyclic peptide RGDfK and Reelin protein. The study of the chemical and photophysical properties of the new labeling reagents, as well as the conjugates, is described. The conjugates displayed high chemical stability and photostability. The NCS derivatives had low fluorescence quantum yields, while their bioconjugates exhibited high fluorescence quantum yields, essentially “lighting up” after conjugation. Conventional and 2PFM imaging and fluorescence lifetime imaging (FLIM) of HeLa, NT2, and H1299 cells, incubated with two-photon absorbing amine-reactive probe (>1), RGDfK-dye conjugate (>7), and Reelin-dye conjugate (>6), was demonstrated.
机译:随着对共焦和双光子荧光成像的需求不断增长,具有高双光子吸收率,高荧光量子产率和高光稳定性的反应性探针的可用性至关重要。为了满足对性能更好的探针的需求,我们准备了两光子吸收胺反应性芴基探针2-(9,9-双(2-(2-(2-甲氧基乙氧基)乙基)-2-isothiocyanato-9H-fluoren- 7-基)苯并噻唑(> 1 )和2-(4-(2-(9,9-双(2-(2-乙氧基乙氧基)乙基)-2-异硫氰酸根-9H-芴-7) -基)乙烯基)苯基)苯并噻唑(> 2 ),并加入异硫氰酸酯作为反应性连接基。通过整合高光学非线性,增加亲水性以及与反应性官能团偶联以特异性靶向生物分子,从而确保了对双光子荧光显微镜(2PFM)成像的更好影响,探针设计得以增强。异硫氰酸酯(NCS)衍生物与环状肽RGDfK和Reelin蛋白偶联。描述了对新标记试剂以及缀合物的化学和光物理性质的研究。结合物显示出高化学稳定性和光稳定性。 NCS衍生物具有较低的荧光量子产率,而它们的生物共轭物则具有较高的荧光量子产率,基本上在结合后“点亮”。 HeLa,NT2和H1299细胞的常规和2PFM成像以及荧光寿命成像(FLIM),与双光子吸收胺反应探针(> 1 ),RGDfK-染料偶联物(> 7)孵育)和Reelin-dye共轭物(> 6 )。

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