National Centre for Human Genome Studies and Research, Panjab University, Sector-14, Chandigarh, 160014, India.
Department of Experimental Medicine and Biotechnology, Postgraduate Institute of Medical Education and Research, Sector-12, Chandigarh, 160012, India.
Sci Rep. 2018 Aug 9;8(1):11926. doi: 10.1038/s41598-018-30158-6.
Drugs that are already clinically approved or experimentally tested for conditions other than cancer, but are found to possess previously unrecognized cytotoxicity towards malignant cells, may serve as fitting anti-cancer candidates. Methyl N-(6-phenylsulfanyl-1H benzimidazol-2-yl) carbamate [Fenbendazole, FZ], a benzimidazole compound, is a safe and inexpensive anthelmintic drug possessing an efficient anti-proliferative activity. In our earlier work, we reported a potent growth-inhibitory activity of FZ caused partially by impairment of proteasomal function. Here, we show that FZ demonstrates moderate affinity for mammalian tubulin and exerts cytotoxicity to human cancer cells at micromolar concentrations. Simultaneously, it caused mitochondrial translocation of p53 and effectively inhibited glucose uptake, expression of GLUT transporters as well as hexokinase (HK II) - a key glycolytic enzyme that most cancer cells thrive on. It blocked the growth of human xenografts in nu/nu mice model when mice were fed with the drug orally. The results, in conjunction with our earlier data, suggest that FZ is a new microtubule interfering agent that displays anti-neoplastic activity and may be evaluated as a potential therapeutic agent because of its effect on multiple cellular pathways leading to effective elimination of cancer cells.
已经在临床上批准或经过实验测试用于治疗癌症以外的其他疾病的药物,但被发现对恶性细胞具有以前未被认识到的细胞毒性,可能成为合适的抗癌候选药物。甲基 N-(6-苯硫基-1H 苯并咪唑-2-基)氨基甲酸酯[芬苯达唑,FZ],一种苯并咪唑化合物,是一种安全且廉价的驱虫药,具有高效的抗增殖活性。在我们之前的工作中,我们报告了 FZ 引起的生长抑制活性,部分原因是蛋白酶体功能受损。在这里,我们表明 FZ 对哺乳动物微管具有中等亲和力,并以微摩尔浓度对人癌细胞表现出细胞毒性。同时,它导致 p53 线粒体易位,并有效抑制葡萄糖摄取、GLUT 转运体的表达以及己糖激酶 (HK II)-一种大多数癌细胞赖以生存的关键糖酵解酶。当小鼠口服给予该药物时,它阻止了人异种移植物在 nu/nu 小鼠模型中的生长。这些结果与我们之前的数据相结合,表明 FZ 是一种新的微管干扰剂,具有抗肿瘤活性,并可能因其对导致有效消除癌细胞的多种细胞途径的影响而被评估为一种潜在的治疗剂。