Dimeric 3,5-Bis(benzylidene)-4-piperidones: Tumor-Selective Cytotoxicity and Structure-Activity Relationships.

Swagatika Das, Praveen K Roayapalley, Hiroshi Sakagami, Naoki Umemura, Dennis K J Gorecki, Mohammad Hossain, Masami Kawase, Umashankar Das, Jonathan R Dimmock
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Abstract

Background: The objective of this study is to find novel antineoplastic agents that display greater toxicity to malignant cells than to neoplasms. In addition, the mechanisms of action of representative compounds are sought. This report describes the cytotoxicity of a number of dimers of 3,5-bis(benzylidene)-4-piperidones against human malignant cells (promyelocytic leukemia HL-60 and squamous cell carcinoma HSC-2, HSC-3, and HSC-4). Methods: Tumor specificity was evaluated by the selectivity index (SI), that is the ratio of the mean CC50 for human non-malignant oral cells (gingival fibroblasts, pulp cells, periodontal ligament fibroblasts) to that for malignant cells. Results: The compounds were highly toxic to human malignant cells. On the other hand, these molecules were less toxic to human non-malignant cells. In particular, a potent lead molecule, 3b, was identified. A QSAR study revealed that the placement of electron-releasing and hydrophilic substituents into the aryl rings led to increases in cytotoxic potencies. The modes of action of a lead compound discovered in this study designated 3b were the activation of caspases-3 and -7, as well as causing PARP1 cleavage and G2 arrest, followed by sub-G1 accumulation in the cell cycle. This compound also depolarized the mitochondrial membrane and generated reactive oxygen species in human colon carcinoma HCT116 cells. In conclusion, this study has revealed that, in general, the compounds described in this report are tumor-selective cytotoxins.

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二聚 3,5-双(亚苄基)-4-哌啶酮:肿瘤选择性细胞毒性和结构-活性关系。
研究背景本研究的目的是寻找对恶性细胞的毒性大于对肿瘤的毒性的新型抗肿瘤药物。此外,还寻求代表性化合物的作用机制。本报告介绍了一些 3,5-双(亚苄基)-4-哌啶酮二聚体对人类恶性细胞(早幼粒细胞白血病 HL-60 和鳞状细胞癌 HSC-2、HSC-3 和 HSC-4)的细胞毒性。方法:肿瘤特异性通过选择性指数(SI)进行评估,即对人类非恶性口腔细胞(牙龈成纤维细胞、牙髓细胞、牙周韧带成纤维细胞)的平均 CC50 与对恶性细胞的平均 CC50 之比。结果:这些化合物对人类恶性细胞有剧毒。另一方面,这些分子对人类非恶性细胞的毒性较低。特别是发现了一种强效先导分子 3b。一项 QSAR 研究表明,在芳基环中加入释放电子和亲水的取代基可提高细胞毒性。本研究中发现的先导化合物 3b 的作用模式是激活 caspases-3 和 -7,以及导致 PARP1 断裂和 G2 停滞,随后在细胞周期中出现亚 G1 累积。该化合物还能使线粒体膜去极化,并在人结肠癌 HCT116 细胞中产生活性氧。总之,这项研究表明,总体而言,本报告所述化合物是具有肿瘤选择性的细胞毒素。
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