首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Nuclear targeting with cell-specific multifunctional tricarbonyl M(I) (M is Re, ~(99m)Tc) complexes: Synthesis, characterization, and cell studies
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Nuclear targeting with cell-specific multifunctional tricarbonyl M(I) (M is Re, ~(99m)Tc) complexes: Synthesis, characterization, and cell studies

机译:细胞特异性多功能三羰基M(I)(M是Re,〜(99m)Tc)配合物的核靶向:合成,表征和细胞研究

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摘要

Auger-emitting radionuclides such as ~(99m)Tc have been the focus of recent studies aiming at finding more selective therapeutic approaches. To explore the potential usefulness of ~(99m)Tc as an Auger emitter, we have synthesized and biologically evaluated novel multifunctional structures comprising (1) a pyrazolyl-diamine framework bearing a set of donor atoms to stabilize the [M(CO)_3]~+ (M is Re, ~(99m)Tc) core; (2) a DNA intercalating moiety of the acridine orange type to ensure close proximity of the radionuclide to DNA and to follow the internalization and subcellular trafficking of the compounds by confocal fluorescence microscopy; and (3) a bombesin (BBN) analogue of the type X-BBN[7-14] (where X is SGS, GGG) to provide specificity towards cells expressing the gastrin releasing peptide receptor (GRPr). Of the evaluated ~(99m)Tc complexes, Tc ~3 containing the GGG-BBN[7-14] peptide showed the highest cellular internalization in GRPr-positive PC3 human prostate tumor cells, presenting a remarkably high nuclear uptake in the same cell line. Live-cell confocal imaging microscopy studies with the congener Re complex, Re ~3, showed a considerable accumulation of fluorescence in the nucleus, with kinetics of uptake similar to that exhibited by Tc ~3. Together, these data show that the acridine orange intercalator and the metal fragment are colocalized in the nucleus, which indicates that they remain connected despite the lysosomal degradation of Tc ~3 /Re ~3. These compounds are the first examples of ~(99m)Tc bioconjugates that combine specific cell targeting with nuclear internalization, a crucial issue to explore use of ~(99m)Tc in Auger therapy.
机译:诸如〜(99m)Tc之类的发射俄歇辐射的放射性核素一直是旨在寻找更多选择性治疗方法的近期研究的重点。为了探索〜(99m)Tc作为俄歇发射极的潜在有用性,我们合成并生物学评估了新型多功能结构,该结构包括(1)带有一组供体原子的吡唑基-二胺骨架,用于稳定[M(CO)_3] 〜+(M是Re,〜(99m)Tc)核心; (2)of啶橙型的DNA插入部分,以确保放射性核素与DNA紧密接近,并通过共聚焦荧光显微镜观察化合物的内在化和亚细胞运输; (3)X-BBN [7-14]型的蛙心素(BBN)类似物(其中X是SGS,GGG),以提供针对表达胃泌素释放肽受体(GRPr)的细胞的特异性。在评估的〜(99m)Tc复合物中,含GGG-BBN [7-14]肽的Tc〜3在GRPr阳性的PC3人前列腺肿瘤细胞中显示出最高的细胞内在化,在同一细胞系中表现出非常高的核摄取。用Re Regen同类物Re〜3进行的活细胞共聚焦成像显微镜研究显示,核中荧光大量积累,吸收动力学与Tc〜3相似。总之,这些数据表明the啶橙嵌入剂和金属片段在细胞核中共定位,这表明尽管Tc〜3 / Re〜3溶酶体降解,它们仍保持连接。这些化合物是〜(99m)Tc生物缀合物的首个实例,其将特定的细胞靶向与核内化结合在一起,这是探索〜(99m)Tc在Auger治疗中的用途的关键问题。

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