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基于钌(II)的 4-硝基-和 4-氨基-1,8-萘酰亚胺缀合物的合成、表征和生物学分析。

Synthesis, Characterization, and Biological Profiling of Ruthenium(II)-Based 4-Nitro- and 4-Amino-1,8-naphthalimide Conjugates.

机构信息

Department of Chemistry, Maynooth University, National University of Ireland, Maynooth W23 F2K8, County Kildare, Ireland.

Synthesis and Solid State Pharmaceutical Centre (SSPC), Limerick, County Limerick, Ireland.

出版信息

Inorg Chem. 2020 Aug 3;59(15):10874-10893. doi: 10.1021/acs.inorgchem.0c01395. Epub 2020 Jul 16.

Abstract

We report the synthesis, photophysical characterization, and biological evaluation of four DNA-binding ruthenium(II) polypyridyl 4-nitro- and 4-amino-1,8-naphthalimide conjugates. A meta arrangement around the ring connecting the 1,8-naphthalimide to a bipyridine ligand creates a cleft, the result of which renders the shape of the complex complementary to that of DNA. We have demonstrated that each complex exhibits water solubility and a distinctive set of photophysical properties that has allowed the nature of their interaction with DNA to be probed by various ground- and excited-state titrations. Furthermore, by varying the ancillary ligands, we also demonstrate their ability to act as DNA photocleavers, where all compounds have been found to cleave supercoiled DNA with high efficiency. Detailed cellular uptake experiments revealed that the conjugates accumulate in the cytoplasm and nucleus of HeLa cells, showing characteristic red metal-to-ligand charge-transfer emission, and also exhibit photoactivated cytotoxicity within the cells upon irradiation at 450 nm. A comparison between the meta and para arrangements of the 1,8-naphthalimide moiety relative to the Ru(II) center suggests increased DNA binding in the case of the meta arrangement; however, bipyridine-4-amino-1,8-naphthalimide conjugates appear to show superior phototoxicity in comparison to their 4-nitro derivatives.

摘要

我们报告了四种 DNA 结合钌(II)聚吡啶 4-硝基和 4-氨基-1,8-萘酰亚胺化合物的合成、光物理特性和生物学评价。连接 1,8-萘酰亚胺和联吡啶配体的环的间位排列形成一个裂缝,其结果使得配合物的形状与 DNA 的形状互补。我们已经证明,每个配合物都具有水溶性和独特的光物理性质,这使得可以通过各种基态和激发态滴定来探测它们与 DNA 的相互作用的性质。此外,通过改变辅助配体,我们还证明了它们作为 DNA 光解剂的能力,所有化合物都被发现能够有效地切割超螺旋 DNA。详细的细胞摄取实验表明,这些配合物在 HeLa 细胞的细胞质和细胞核中积累,显示出特征性的红色金属-配体电荷转移发射,并且在 450nm 照射下在细胞内也表现出光激活的细胞毒性。1,8-萘酰亚胺部分相对于 Ru(II)中心的间位和对位排列的比较表明,在间位排列的情况下,DNA 结合增加;然而,与 4-硝基衍生物相比,联吡啶-4-氨基-1,8-萘酰亚胺配合物似乎表现出更高的光毒性。

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