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首页> 外文期刊>RSC Advances >Photocytotoxic luminescent lanthanide complexes of DTPA-bisamide using quinoline as photosensitizer
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Photocytotoxic luminescent lanthanide complexes of DTPA-bisamide using quinoline as photosensitizer

机译:使用喹啉作为光敏剂的DTPA-Bisamide的光致毒性发光镧系元络合物

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摘要

Lanthanide complexes [Ln(DTPAAQ)(DMF)] (1-3) (Ln - Pr (1), Eu (2), Tb (3), H(3)DTPAAQ - N, N ''-bis(3-amidoquinolyl) diethylenetriamine-N, N', N ''-triacetic acid, DMF - N, N-dimethylformamide) were studied for their structures, photophysical properties, DNA and protein binding, DNA photocleavage, photocytotoxicity and cellular internalization. The crystal structures of complexes [Ln(DTPAAQ)(DMF)] (1-3) display a discrete mononuclear nine-coordinate {LnN(3)O(6)} tricapped-trigonal prism (TTP) coordination geometry. The europium and terbium complexes show strong luminescence properties in the visible region having a long luminescence lifetime (tau = 0.51-0.64 ms). The conjugated 3-aminoquinoline moieties act as efficient light harvesting antennae, which upon photoexcitation transfer their energy to Eu(III) or Tb(III) for their characteristic D-5(0) -> F-7(J) or D-5(4) -> F-7(J) f-f transitions respectively. The complexes display efficient binding affinity to DNA (K-b = 3.4 x 10(4) - 9.8 x 10(4) M-1) and BSA (KBSA = 3.03 x 10(4) - 6.57 x 10(4) M-1). Europium and terbium complexes give enhanced luminescence upon interacting with CT-DNA suggesting possible luminescence-based sensing applications for these complexes. Complexes 1-3 show moderate cleavage of supercoiled (SC) DNA to its nicked circular (NC) form on exposure to UV-A light of 312 nm involving formation of singlet oxygen (O-1(2)) and hydroxyl radicals (cOH) in type-II and photoredox pathways. Eu(III) and Tb(III) complexes exhibit remarkable photocytotoxicity with human cervical cancer cell line (HeLa) (IC50 = 20.7-28.5 mM) while remaining essentially noncytotoxic up to 150 mM in the dark. Complexes are nontoxic in nature thus suitable for designing cellular imaging agents. Fluorescence microscopy data reveal primarily cytosolic localization of the Eu(III) and Tb(III) complexes in HeLa cells.
机译:镧系元络合物[LN(DTPAAQ)(DMF)](1-3)(1-3)(LN - Pr(1),Eu(2),Tb(3),H(3)DTPAAQ - N,N''(3-研究其结构,光学性质,DNA和蛋白质结合,DNA光学术,光致毒性和细胞内化研究了氨基喹啉基-N,N',N' - 牵引酸,DMF-N,N-二甲基甲酰胺)。复合物的晶体结构[LN(DTPAAQ)(DMF)](1-3)显示的离散单核九坐标{LNN(3)O(6)}三冠-三角棱柱(TTP)协调的几何形状。铕和铽配合物表现出具有长发光寿命(TAU = 0.51-0.64毫秒)在可见光区强发光性能。缀合的3-氨基喹啉部分用作有效的光收集天线,其在光透镜将它们的能量转移到欧盟(III)或TB(III)的特征D-5(0) - > F-7(J)或D-5 (4) - > F-7(J)FF过渡。复合物对DNA显示有效的结合亲和力(Kb = 3.4×10(4) - 9.8×10(4)m-1)和BSA(kbsa = 3.03×10(4) - 6.57×10(4)m-1) 。铕和铽络合物在与CT-DNA相互作用时具有增强的发光,提示这些配合物的可能的发光的感测应用。复合物1-3将超级筛选(SC)DNA的适度裂解在其切割的圆形(NC)形式上暴露于UV-A的312nm的光,涉及形成单线氧(O-1(2))和羟基自由基(COH)在II型和Photoreox途径中。欧盟(III)和TB(III)复合物与人宫颈癌细胞系(IC50 = 20.7-28.5mm)表现出卓越的光催化性,同时在黑暗中剩余基本上非酸碱毒性高达150毫米。复合物在自然界中无毒,因此适用于设计细胞成像剂。荧光显微镜数据揭示了HeLa细胞中Eu(III)和Tb(III)复合物的胞质定位。

著录项

  • 来源
    《RSC Advances》 |2015年第130期|共11页
  • 作者单位

    Indian Inst Technol Kanpur Dept Chem Kanpur 208016 Uttar Pradesh India;

    Indian Inst Sci Dept Inorgan &

    Phys Chem Bangalore 560012 Karnataka India;

    Indian Inst Technol Kanpur Dept Chem Kanpur 208016 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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