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首页> 外文期刊>Journal of Molecular and Engineering Materials >PEGYLATED CONJUGATED OLIGOMERS FOR TARGETED TWO-PHOTON FLUORESCENCE IMAGING OF CANCER CELLS
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PEGYLATED CONJUGATED OLIGOMERS FOR TARGETED TWO-PHOTON FLUORESCENCE IMAGING OF CANCER CELLS

机译:聚乙二醇化共轭低聚物用于靶向性的两细胞荧光成像。

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A water-dispersible PEGylated conjugated oligomer (PEGTVFVBN) is synthesized for two- photon fluorescence imaging applications. PEGTVFVBN could aggregate into nanoparticles of ~ 110 nm size in H_2O, which show a fluorescence quantum yield of 0.12, 20 times higher than that for its cationic counterpart (TVFVBC). Two-photon fluorescence measurement reveals a maxi- mum two-photon absorption (TPA) cross-section of 263 GM at 780 nm based on molecules for PEGTVFVBN nanoparticles in H_2O, while the TPA spectra of TVFVBC are barely detectable under the same experimental conditions. The N,N'-diacetylchitobiotic acid conjugated derivative (ChPEGTVFVBN) could also aggregate into nanoparticles of ~ 90 nm sizes, showing a slightly smaller fluorescence quantum yield of 0.08 and a maximum TPA cross-section of 213 GM at 780 nm. ChPEGTVFVBN could be specifically internalized by vimentin over expressing Hela cells through a receptor mediated endocytosis, giving two-photon fluorescence images in a bright and high contrast manner. In addition, both PEGTVFVBN and ChPEGTVFVBN show low cytotoxicity, which is essential for cell imaging applications. This study thus highlights the molecular engineering strategy of PEGylation to construct robust TPA materials for two-photon fluorescence imaging applications.
机译:合成了一种水分散性PEG化的共轭低聚物(PEGTVFVBN),用于双光子荧光成像应用。 PEGTVFVBN可以在H_2O中聚集成〜110 nm大小的纳米粒子,其荧光量子产率为0.12,比其阳离子对应物(TVFVBC)高20倍。基于在H_2O中PEGTVFVBN纳米粒子的分子,双光子荧光测量显示在780 nm处最大263 GM的最大双光子吸收(TPA)截面,而在相同实验条件下几乎无法检测到TVFVBC的TPA光谱。 N,N'-二乙酰壳聚糖酸共轭衍生物(ChPEGTVFVBN)也可以聚集成〜90 nm大小的纳米颗粒,显示出略微更小的荧光量子产率0.08和在780 nm处的最大TPA截面为213 GM。 ChPEGTVFVBN可以被波形蛋白通过受体介导的内吞作用过度表达Hela细胞特异性内化,从而以明亮和高对比度的方式提供双光子荧光图像。此外,PEGTVFVBN和ChPEGTVFVBN均显示出低细胞毒性,这对于细胞成像应用至关重要。因此,这项研究强调了聚乙二醇化的分子工程策略,以构建用于双光子荧光成像应用的坚固TPA材料。

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