Idowu Temilolu, Samadder Pranati, Arthur Gilbert, Schweizer Frank
Department of Chemistry, Faculty of Science, University of Manitoba , 144 Dysart Road, Winnipeg, Manitoba R3T 2N2, Canada.
Department of Biochemistry and Medical Genetics, Faculty of Health Sciences, University of Manitoba , 745 Bannatyne Avenue, Winnipeg, Manitoba R3E 0J9, Canada.
J Med Chem. 2017 Dec 14;60(23):9724-9738. doi: 10.1021/acs.jmedchem.7b01198. Epub 2017 Oct 27.
The problems of resistance to apoptosis-inducing drugs, recurrence, and metastases that have bedeviled cancer treatment have been attributed to the presence of cancer stem cells (CSCs) in tumors, and there is currently no clinically indicated drug for their eradication. We previously reported that glycosylated antitumor ether lipids (GAELs) display potent activity against CSCs. Here, we show that by carefully modulating the amphiphilic nature of a monoamine-based GAEL, we can generate a potent triamino scaffold that is active against a panel of hard-to-kill epithelial cancer cell lines (including triple-negative breast) and BT474 CSCs. The most active compound of this set, which acts via a nonmembranolytic, nonapoptotic caspase-independent mechanism, is more effective than cisplatin and doxorubicin against these cell lines and more potent than salinomycin against BT474 CSCs. Understanding the combination of factors crucial for the enhanced cytotoxicity of GAELs opens new avenues to develop potent compounds against drug-resistant cancer cells and CSCs.
困扰癌症治疗的对诱导凋亡药物的耐药性、复发和转移问题,已归因于肿瘤中癌症干细胞(CSCs)的存在,且目前尚无临床适用的根除这些细胞的药物。我们之前报道过糖基化抗肿瘤醚脂(GAELs)对癌症干细胞具有强大活性。在此,我们表明,通过精细调节基于单胺的GAEL的两亲性,能够生成一种有效的三氨基支架,它对一组难以杀死的上皮癌细胞系(包括三阴性乳腺癌细胞系)和BT474癌症干细胞具有活性。该组中活性最强的化合物通过非膜溶解、非凋亡的不依赖半胱天冬酶的机制发挥作用,在针对这些细胞系时比顺铂和阿霉素更有效,在针对BT474癌症干细胞时比沙林霉素更有效。了解对GAELs增强细胞毒性至关重要的多种因素的组合,为开发针对耐药癌细胞和癌症干细胞的有效化合物开辟了新途径。