Guangxi Key Laboratory of Electrochemical and Magnetochemical Functional Materials, College of Chemistry and Bioengineering, Guilin University of Technology, Guilin, 541004, P. R. China.
College of Chemistry, Guangdong University of Petrochemical Technology, Maoming, Guangdong, 525000, P. R. China.
Dalton Trans. 2022 Mar 29;51(13):5024-5033. doi: 10.1039/d1dt04095b.
In this study, two novel curcumin (H-Cur)-tryptanthrin metal compounds-[Zn(TA)Cl], , Zn(TA), and [Zn(TA)(Cur)]Cl, , Zn(TAC)-were synthesized and investigated using 5-(bis-pyridin-2-ylmethyl-amino)-pentanoic acid (6,12-dioxo-6,12-dihydro-indolo[2,1-]quinazolin-8-yl)-amide (TA) and H-Cur as the targeting and high-activity anticancer chemotherapeutic moieties, respectively. They were then compared with the di-(2-picolyl)amine (PA) Zn(II) complex [Zn(PA)Cl], , Zn(PA). When compared with Zn(PA) and cisplatin, the IC values of Zn(TA) and Zn(TAC) indicated that the compounds had high cytotoxicity against A549/DDP cancer cells, implying that the H-Cur-tryptanthrin Zn(II) compounds have the potential for use as anticancer drugs. We propose the use of synthesized theragnostic H-Cur-tryptanthrin Zn(II) complexes with nuclear-targeting and DNA-damaging capabilities as a simple therapeutic strategy against tumors. The Zn(TA) and Zn(TAC) complexes could be traced red fluorescence and were found to accumulate in the cell nuclei and induce DNA damage, cell cycle arrest, mitochondrial dysfunction, and cell apoptosis both and . In addition, Zn(TAC) exhibited a higher antiproliferative effect on A549/DDP than Zn(TA) and Zn(PA), which was undoubtedly associated with the key roles of the novel tryptanthrin derivative TA and H-Cur in the Zn(TAC) complex.
在这项研究中,合成了两种新型姜黄素(H-Cur)-色胺酮金属化合物-[Zn(TA)Cl],[Zn(TA)],和[Zn(TA)(Cur)]Cl,[Zn(TAC)],并使用 5-(双吡啶-2-基甲基-氨基)戊酸(6,12-二氧代-6,12-二氢-吲哚[2,1-]喹唑啉-8-基)-酰胺(TA)和 H-Cur 作为靶向和高活性抗癌化疗药物部分。然后将它们与二(2-吡啶基)胺(PA)Zn(II)配合物[Zn(PA)Cl],[Zn(PA)]进行比较。与 Zn(PA)和顺铂相比,Zn(TA)和 Zn(TAC)的 IC 值表明这些化合物对 A549/DDP 癌细胞具有高细胞毒性,这意味着 H-Cur-色胺酮 Zn(II)化合物具有作为抗癌药物的潜力。我们提出使用具有核靶向和 DNA 损伤能力的合成治疗诊断 H-Cur-色胺酮 Zn(II)配合物作为一种针对肿瘤的简单治疗策略。Zn(TA)和 Zn(TAC)配合物可以发出红色荧光,并且被发现可以在细胞核中积累并诱导 DNA 损伤、细胞周期停滞、线粒体功能障碍和细胞凋亡。此外,Zn(TAC)对 A549/DDP 的增殖抑制作用高于 Zn(TA)和 Zn(PA),这无疑与新型色胺酮衍生物 TA 和 H-Cur 在 Zn(TAC)配合物中的关键作用有关。