Alsaid Mansour S, Al-Mishari Abdullah A, Soliman Aiten M, Ragab Fatma A, Ghorab Mostafa M
Department of Pharmacognosy, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.
Medicinal, Aromatic and Poisonous Plants Research Center (MAPPRC), College of Pharmacy, King Saud University, Saudi Arabia.
Eur J Med Chem. 2017 Dec 1;141:84-91. doi: 10.1016/j.ejmech.2017.09.061. Epub 2017 Sep 29.
An array of some new N-(substituted)-2-((4-oxo-3-(4-sulfamoylphenyl)-3,4-dihydrobenzo[g]quinazolin-2-yl)thio)acetamide 5-19 were synthesized from the starting compound 4-(2-mercapto-4-oxobenzo[g]quinazolin-3(4H)-yl)benzenesulfonamide 4, to be assessed for their cytotoxic activity against A549 lung cancer cell line and to determine their inhibitory effect on EGFR tyrosine kinase enzyme. Compounds 5-19 showed high activity towards A549 cell line with IC values of 0.12-8.70 μM. Compounds 6, 12 and 18 were the most potent in this series. These compounds were further screened as dual inhibitors for EGFR/HER2 enzymes in comparison with erlotinib and were found to possess very potent activity. Compound 12 showed the highest activity with IC values of 0.06 μM and 0.30 μM towards EGFR and HER2, respectively. Accordingly, the apoptotic effect of the most potent compounds 6, 12 and 18 was investigated and showed a marked increase in the level of caspases-3 by 6, 9 and 8 folds, respectively, compared to the control cells. Moreover, Molecular modeling was performed inside the active site of EGFR, keeping in mind their binding possibilities, bond lengths, angles and energy scores. It was found that the most active compounds demonstrated the best binding scores in the active site of EGFR, which may clarify their high inhibition profile.
一系列新的N-(取代)-2-((4-氧代-3-(4-氨磺酰基苯基)-3,4-二氢苯并[g]喹唑啉-2-基)硫代)乙酰胺5-19由起始化合物4-(2-巯基-4-氧代苯并[g]喹唑啉-3(4H)-基)苯磺酰胺4合成,以评估它们对A549肺癌细胞系的细胞毒性活性,并确定它们对EGFR酪氨酸激酶的抑制作用。化合物5-19对A549细胞系表现出高活性,IC值为0.12-8.70μM。化合物6、12和18在该系列中最具活性。与厄洛替尼相比,这些化合物进一步被筛选为EGFR/HER2酶的双重抑制剂,并被发现具有非常强的活性。化合物12表现出最高活性,对EGFR和HER2的IC值分别为0.06μM和0.30μM。因此,研究了最具活性的化合物6、12和18的凋亡作用,结果显示与对照细胞相比,caspases-3水平分别显著增加了6倍、9倍和8倍。此外,在EGFR的活性位点内进行了分子建模,同时考虑了它们的结合可能性、键长、角度和能量得分。发现最具活性的化合物在EGFR的活性位点表现出最佳的结合得分,这可能解释了它们的高抑制特性。