Singh Harbinder, Singh Jatinder V, Gupta Manish K, Saxena Ajit K, Sharma Sahil, Nepali Kunal, Bedi Preet Mohinder S
Department of Pharmaceutical Sciences, Guru Nanak Dev University, Amritsar, Punjab 143005, India.
Lloyd Institute of Management and Technology, Greater Noida, UP, India.
Bioorg Med Chem Lett. 2017 Sep 1;27(17):3974-3979. doi: 10.1016/j.bmcl.2017.07.069. Epub 2017 Jul 29.
In an attempt to develop potent anti-tubulin agents against most dreadful disease cancer, a library of 28 novel triazole tethered isatin-coumarin hybrids were synthesized by click chemistry approach. Synthesized hybrids were characterized and evaluated against a panel of human cancer cell lines viz. THP-1, COLO-205, HCT-116 and PC-3. Biological assay unveiled that, compounds A-1 to A-6, B-1 to B-4 and C-1 to C-3 displayed significant inhibitory potential against THP-1, COLO-205 and HCT-116 cell lines which were more sensitive towards the designed hybrids. PC-3 among these cell lines was found to be almost resistant. Established SAR revealed marked dependence of the cytotoxic activity on the type of substituent on isatin and the length of carbon-bridge connecting isatin moiety with triazole ring. Unsubstituted isatin and two carbon-bridge were found to be crucial for cytotoxicity. Three most potent hybrids (A-1, A-2 and B-1) were further tested for tubulin polymerization inhibition. Among these three compounds, A-1 found to be endowed with most prominent tubulin polymerization inhibition potential with IC value of 1.06µM which was further confirmed by using confocal microscopy. Possible binding interactions between the most potent hybrid molecule A-1 and tubulin were also divulged by molecular modeling studies.
为了开发针对最可怕的疾病——癌症的强效抗微管蛋白药物,通过点击化学方法合成了一个包含28种新型三唑连接的异吲哚酮-香豆素杂化物的文库。对合成的杂化物进行了表征,并针对一组人类癌细胞系,即THP-1、COLO-205、HCT-116和PC-3进行了评估。生物学测定表明,化合物A-1至A-6、B-1至B-4和C-1至C-3对THP-1、COLO-205和HCT-116细胞系显示出显著的抑制潜力,这些细胞系对设计的杂化物更敏感。在这些细胞系中,发现PC-3几乎具有抗性。已建立的构效关系表明,细胞毒性活性对异吲哚酮上取代基的类型以及连接异吲哚酮部分与三唑环的碳桥长度有明显的依赖性。未取代的异吲哚酮和两个碳桥被发现对细胞毒性至关重要。进一步测试了三种最有效的杂化物(A-1、A-2和B-1)对微管蛋白聚合的抑制作用。在这三种化合物中,发现A-1具有最突出的微管蛋白聚合抑制潜力,IC值为1.06µM,这通过共聚焦显微镜进一步得到证实。分子建模研究还揭示了最有效的杂化分子A-1与微管蛋白之间可能的结合相互作用。