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首页> 外文期刊>Organometallics >Luminescent conjugates between dinuclear rhenium complexes and peptide nucleic acids (PNA): Synthesis, photophysical characterization, and cell uptake
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Luminescent conjugates between dinuclear rhenium complexes and peptide nucleic acids (PNA): Synthesis, photophysical characterization, and cell uptake

机译:双核rh复合物和肽核酸(PNA)之间的发光共轭物:合成,光物理特性和细胞摄取

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Different PNA decamers have been appended to a luminescent [Re _2(μ-Cl) _2(CO) _6(μ-1,2-diazine)] complex, to obtain conjugates suitable for cellular imaging. The new compounds can be dissolved in water in the presence of an amount of DMSO as small as 0.4-0.6 mol %. The conjugation with PNA did not perturb the photoluminescence behavior of the organometallic fragment: emission from 3MLCT excited states, centered at ca. 610 nm, was observed, with satisfactory photoluminescence quantum yields (Φ = ca. 0.01, in aerated water). Moreover, the emission could be stimulated also by two-photon excitation. Experiments of cell uptake, performed with different cell lines and under different experimental conditions, showed that the nature of the PNA oligomer strongly affects the biointeraction, while no major differences were observed among the cell lines investigated. The Re-PNA conjugates containing neutral PNA decamers (either homothymine or a standard sequence of the four nucleobases) showed a marked tendency to concentrate in the nuclear region, whereas nucleus penetration was more difficult for the free dirhenium complex. Staining of nucleus and cytoplasm with different colors was generally observed. No nucleus penetration was instead observed for a water-soluble Re-PNA homothymine decamer end-capped with four lysine residues, which localized in endosome-like compartments.
机译:已经将不同的PNA十聚体附加到发光的[Re _2(μ-Cl)_2(CO)_6(μ-1,2-二嗪)]络合物上,以获得适合细胞成像的结合物。可以在小至0.4-0.6 mol%的DMSO存在下将新化合物溶于水中。与PNA的共轭不会扰乱有机金属片段的光致发光行为:3MLCT激发态的发射,中心在。观察到610nm,具有令人满意的光致发光量子产率(Φ=约0.01,在充气水中)。此外,还可以通过双光子激发来激发发射。在不同的细胞系和不同的实验条件下进行的细胞摄取实验表明,PNA低聚物的性质强烈影响生物相互作用,而在所研究的细胞系之间未观察到主要差异。包含中性PNA十聚体(高胸腺嘧啶或四个核碱基的标准序列)的Re-PNA共轭物表现出明显的富集在核区域的趋势,而游离的dirhenium复合物的核渗透则更加困难。通常观察到具有不同颜色的细胞核和细胞质的染色。取而代之的是,对于以四个赖氨酸残基封端的水溶性Re-PNA高苏氨酸胸腺嘧啶,没有观察到核渗透,所述赖氨酸残基位于内体样区室中。

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