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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Osmium(II) polypyridyl polyarginine conjugate as a probe for live cell imaging; a comparison of uptake, localization and cytotoxicity with its ruthenium(II) analogue
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Osmium(II) polypyridyl polyarginine conjugate as a probe for live cell imaging; a comparison of uptake, localization and cytotoxicity with its ruthenium(II) analogue

机译:poly(II)聚吡啶基聚精氨酸缀合物作为活细胞成像的探针;钌(II)类似物的摄取,定位和细胞毒性比较

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A first investigation into the application of a luminescent osmium(II) bipyridine complex to live cell imaging is presented. Osmium(II) (bis-2,2-bipyridyl)-2(4-carboxylphenyl) imidazo[4,5f][1,10] phenanthroline was prepared and conjugated to octaarginine, a cell penetrating peptide. The photophysics, cell uptake and cytotoxicity of this osmium complex conjugate were performed and compared with its ruthenium analogue. Cell uptake and distribution of both ruthenium and osmium conjugates were very similar with rapid transmembrane transport of the osmium probe (complete within approx. 20 min) and dispersion throughout the cytoplasm and organelles. The near-infrared (NIR) emission of the osmium complex (lambda(max) 726 nm) coincides well with the biological optical window and this facilitated luminescent and luminescence lifetime imaging of the cell which was well resolved from cell autofluorescence. The large Stokes shift of the emission also permitted resonance Raman mapping of the dye within CHO cells. Rather surprisingly, the osmium conjugate exhibited very low cytotoxicity when incubated both in the dark and under visible irradiation. This was attributed to the remarkable stability of this complex which was reflected by the complete absence of photo-bleaching of the complex even under extended continuous irradiation. In addition, when compared to its ruthenium analogue its luminescence was short-lived in water therefore rendering it insensitive to O-2.
机译:提出了对发光(II)联吡啶复合物在活细胞成像中的应用的首次研究。制备((II)(双-2,2-联吡啶基)-2(4-羧基苯基)咪唑并[4,5f] [1,10]菲咯啉并将其缀合至细胞穿透肽八精氨酸。进行了该complex配合物缀合物的光物理,细胞摄取和细胞毒性的比较,并将其与钌类似物进行了比较。钌和结合物的细胞摄取和分布与similar探针的快速跨膜运输(在约20分钟内完成)以及在整个细胞质和细胞器中的分散非常相似。 complex复合物的近红外(NIR)发射(λ(max)726 nm)与生物光学窗口非常吻合,这有利于细胞的发光和发光寿命成像,这很好地解决了细胞自发荧光的问题。发射的大斯托克斯位移也允许CHO细胞内染料发生共振拉曼作图。出乎意料的是,当在黑暗中和可见光下孵育时,缀合物都表现出非常低的细胞毒性。这归因于该配合物的显着稳定性,这反映在即使在延长的连续照射下完全不存在该配合物的光致漂白。此外,与钌类似物相比,其发光在水中的寿命很短,因此对O-2不敏感。

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