Gupta Seema, Shukla Alok, Pandey Shivendra Kumar, Jha Shalini, Zewde Berhanu, Acharya Arbind, Butcher Raymond John, Bharty M K
Department of Chemistry, Banaras Hindu University, Varanasi 221005, India.
Department of Zoology, Banaras Hindu University, Varanasi 221005, India.
ACS Omega. 2025 Apr 1;10(14):13829-13838. doi: 10.1021/acsomega.4c06972. eCollection 2025 Apr 15.
The development of facile and cost-effective anticancer metallodrugs possessing minimal side effects is urgently needed. Piperazine-containing anticancer drugs are already available on the market. A piperazine-based potassium 4-(ethoxycarbonyl)piperazine-1-carbodithioate [pecpcdt] () ligand and its metal complexes [Co(ecpcdt)] (), [Ni(ecpcdt)] (), [Cu(ecpcdt)] (), and [Zn(ecpcdt)] () were synthesized. These compounds were characterized by different spectroscopic methods and single-crystal X-ray crystallography data. Ni(II) and Cu(II) complexes have distorted square planar geometry, whereas the Co(III) complex has distorted octahedral geometry around the metal ions. Complexes are weakly fluorescent in the solution compared to the free ligand. The complexes were further examined for their anticancer activities against the primary Dalton's lymphoma (DL) cells along with standard drug cisplatin. The anticancer studies of metal complexes have been performed through various biochemical assays, and the findings thus obtained suggest that they demonstrate an effective anticancer activity. [Co(ecpcdt)] () shows superior cytotoxicity against DL cells than complexes [Cu(ecpcdt)] (), [Zn(ecpcdt)] (), and cisplatin. The superiority preferences of these complexes follows [Co(ecpcdt)] () > [pecpcdt] > [Cu(ecpcdt)] () > [Ni(ecpcdt)] () > [Zn(ecpcdt)] (). Further assays were performed on a cobalt(III) complex having the highest efficacy to gain insights into the mechanism of cell death and showed that reduced mitochondrial membrane potential and increased mitochondrial ROS production, highlighting mitochondrial-dependent apoptosis as the major mechanism for tumor cell death. On the other hand, the viability of normal splenocytes was minimally affected by the [Co(ecpcdt)] () treatment.
迫切需要开发出简便且经济高效、副作用最小的抗癌金属药物。含哌嗪的抗癌药物已在市场上有售。合成了一种基于哌嗪的4-(乙氧羰基)哌嗪-1-碳二硫代酸钾[pecpcdt]()配体及其金属配合物[Co(ecpcdt)]()、[Ni(ecpcdt)]()、[Cu(ecpcdt)]()和[Zn(ecpcdt)]()。这些化合物通过不同的光谱方法和单晶X射线晶体学数据进行了表征。Ni(II)和Cu(II)配合物具有扭曲的平面正方形几何结构,而Co(III)配合物在金属离子周围具有扭曲的八面体几何结构。与游离配体相比,配合物在溶液中的荧光较弱。这些配合物进一步针对原发性道尔顿淋巴瘤(DL)细胞以及标准药物顺铂进行了抗癌活性检测。通过各种生化测定对金属配合物进行了抗癌研究,所得结果表明它们具有有效的抗癌活性。[Co(ecpcdt)]()对DL细胞的细胞毒性优于配合物[Cu(ecpcdt)]()、[Zn(ecpcdt)]()和顺铂。这些配合物的优势顺序为[Co(ecpcdt)]()>[pecpcdt]>[Cu(ecpcdt)]()>[Ni(ecpcdt)]()>[Zn(ecpcdt)]()。对具有最高疗效的钴(III)配合物进行了进一步检测,以深入了解细胞死亡机制,结果表明线粒体膜电位降低,线粒体ROS产生增加,突出了线粒体依赖性凋亡是肿瘤细胞死亡的主要机制。另一方面,[Co(ecpcdt)]()处理对正常脾细胞的活力影响最小。