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基于缩氨基硫脲的 Pd(II) 配合物的合成:结构解析、对 Suzuki-Miyaura 偶联反应的催化活性和对三阴性乳腺癌细胞的抗肿瘤活性。

Fabrication of thiosemicarbazone-based Pd(II) complexes: structural elucidations, catalytic activity towards Suzuki-Miyaura coupling reaction and antitumor activity against TNBC cells.

机构信息

Department of Chemistry, Jadavpur University, Kolkata-700032, India.

Structural Biology & Bio-Informatics Division, CSIR-Indian Institute of Chemical Biology, 4, Raja S. C. Mallick Road, Kolkata 700032, India.

出版信息

Dalton Trans. 2024 Jul 16;53(28):11914-11927. doi: 10.1039/d4dt00950a.

Abstract

Currently, there are many uses of metal complexes, especially in the fields of medicinal chemistry and catalysis. Thus, fabrication of new complexes which perform as a catalyst and chemotherapeutic drug is always a beneficial addition to the literature. Herein, we report three heterocyclic thiosemicarbazone-based Pd(II) complexes [Pd(HL1)Cl] (C1), [Pd(L2)(PPh)] (C2) and [Pd(L3)(PPh)]Cl (C3) having coligands Cl and PPh. Thiosemicarbazone ligands (H2L1, H2L2 and HL3) and the complexes (C1-C3) were characterized methodically using several spectroscopic techniques. Single-crystal X-ray diffraction methods reveal that the structural environment around the metal center of C2 is square planar, while for C1 and C3 it is a slighty distorted square plane. The supramolecular network of compounds was built hydrogen bonds, C-H⋯π and π⋯π interactions. Density functional theory (DFT) study of the structure of the complexes supports experimental findings. The application of these complexes as catalysts toward Suzuki-Miyaura coupling reactions has been examined with various aryl halides and phenyl boronic acid in PEG 400 solvent. The complexes displayed good biomolecular interactions with DNA/protein, with a binding constant value of the order of 10 M. C3 showed greater binding efficacy toward these biomolecules than the other complexes, which might be due to the cationic nature of C3. Furthermore, antitumor activity of the complexes was studied against the human triple-negative breast cancer (TNBC) cell line MDA-MB-231. It was found that C3 was more toxic (IC = 10 ± 2.90 μM) toward MDA-MB-231 cells than the other complexes. A known chemotherapeutic drug, 5-fluorouracil, was included as positive control. The programmed cell death mechanism of C3 was confirmed. Additionally, complex-induced apoptosis was confirmed and occurred a mitochondria-dependent (intrinsic) pathway.

摘要

目前,金属配合物有许多用途,特别是在药物化学和催化领域。因此,制造具有催化和化学治疗药物性能的新型配合物一直是文献的有益补充。在此,我们报告了三种基于杂环缩硫代氨基脲的 Pd(II)配合物 [Pd(HL1)Cl] (C1)、[Pd(L2)(PPh)] (C2) 和 [Pd(L3)(PPh)]Cl (C3),它们具有配位体 Cl 和 PPh。缩硫代氨基脲配体 (H2L1、H2L2 和 HL3) 和配合物 (C1-C3) 均采用多种光谱技术进行了系统的表征。单晶 X 射线衍射方法表明,C2 中金属中心周围的结构环境为平面正方形,而对于 C1 和 C3,其结构环境为稍有扭曲的平面正方形。化合物的超分子网络是通过氢键、C-H···π 和 π···π 相互作用构建的。配合物结构的密度泛函理论 (DFT) 研究支持了实验结果。这些配合物作为催化剂在 PEG 400 溶剂中对 Suzuki-Miyaura 偶联反应进行了研究,考察了不同芳基卤化物和苯硼酸的应用。配合物与 DNA/蛋白质具有良好的生物分子相互作用,结合常数值为 10 M 数量级。与其他配合物相比,C3 对这些生物分子的结合效果更好,这可能是由于 C3 的阳离子性质所致。此外,还研究了配合物对人三阴性乳腺癌 (TNBC) 细胞系 MDA-MB-231 的抗肿瘤活性。结果发现,C3 对 MDA-MB-231 细胞的毒性更强 (IC = 10 ± 2.90 μM),比其他配合物更强。一种已知的化疗药物 5-氟尿嘧啶被用作阳性对照。证实了 C3 诱导的细胞死亡机制。此外,还证实了配合物诱导的细胞凋亡是通过线粒体依赖性 (内在) 途径发生的。

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