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首页> 外文期刊>RSC Advances >Design and synthesis of lipid-mimetic cationic iridium complexes and their liposomal formulation for in vitro and in vivo application in luminescent bioimaging
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Design and synthesis of lipid-mimetic cationic iridium complexes and their liposomal formulation for in vitro and in vivo application in luminescent bioimaging

机译:致脂质阳离子铱络合物的设计与合成体外和体内潮磷酸盐生物分析中的脂质制剂

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Two iridium [Ir(N^C) _(2) (N^N)] ~(+) complexes with the diimine N^N ligand containing a long polymethylene hydrophobic chain were synthesized and characterized by using NMR and ESI mass-spectrometry: N^N – 2-(1-hexadecyl-1 H -imidazol-2-yl)pyridine, N^C – methyl-2-phenylquinoline-4-carboxylate ( Ir1 ) and 2-phenylquinoline-4-carboxylic acid ( Ir2 ). These complexes were used to prepare the luminescent PEGylated DPPC liposomes (DPPC/DSPE-PEG2000/Ir-complex = 95/4.5/1 mol%) using a thin film hydration method. The narrowly dispersed liposomes had diameters of about 110 nm. The photophysics of the complexes and labeled liposomes were carefully studied. Ir1 and Ir2 give red emission ( λ _(em) = 667 and 605 nm) with a lifetime in the microsecond domain and quantum yields of 4.8% and 10.0% in degassed solution. Incorporation of the complexes into the liposome lipid bilayer results in shielding of the emitters from interaction with molecular oxygen and partial suppression of excited state nonradiative relaxation due to the effect of the relatively rigid bilayer matrix. Delivery of labeled liposomes to the cultured ARPE-19 cells demonstrated the usefulness of Ir1 and Ir2 in cellular imaging. Labeled liposomes were then injected intravitreally into rat eyes and imaged successfully with optical coherence tomography and funduscopy. In conclusion, iridium complexes enabled the successful labeling and imaging of liposomes in cells and animals.
机译:用NMR和ESI质谱法合成含有长聚亚乙烯疏水链的二亚胺N ^ N配体的两个铱[IR(N ^ C)_(2)(N ^ N)]〜(+)复合物: N ^ N - 2-(1-十六烷基-1h-inimidazol-2-Y1)吡啶,N ^ C - 甲基-2-苯基喹啉-4-羧酸盐(IR1)和2-苯基喹啉-4-羧酸(IR2) 。使用薄膜水合方法,使用这些配合物制备发光聚乙二醇化DPPC脂质体(DPPC / DSPE-PEG2000 / IR-复合物)。狭窄分散的脂质体具有约110nm的直径。仔细研究了复合物和标记的脂质体的光药。 IR1和IR2给出红色发射(λ_(em)= 667和605nm),微秒结构域,脱气溶液中的4.8%和10.0%的量子产率为4.8%和10.0%。将配合物掺入脂质体脂质双层导致发射器的屏蔽与分子氧的相互作用,并且由于相对刚性双层基质的效果而导致的激发态非相互作用弛豫的部分抑制。将标记的脂质体递送至培养的ARPE-19细胞,证明了IR1和IR2在细胞成像中的有用性。然后用光学相干断层扫描和眼底复制到大鼠眼中标记的脂质体并成功成像。总之,铱络合物使能细胞和动物脂质体的成功标记和成像。

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