Abdel-Mohsen Heba T
Chemistry of Natural and Microbial Products Department, Pharmaceutical and Drug Industries Research Institute, National Research Centre, Dokki, P.O. 12622, Cairo, Egypt.
BMC Chem. 2024 Sep 13;18(1):169. doi: 10.1186/s13065-024-01277-1.
In the current study, molecular hybridization between the oxindole core and benzothiazole system through an acetohydrazide moiety was accomplished for the design of a new series of oxindole-benzothiazole hybrids 9a-r targeting CDK2 for cancer therapy. The afforded hybrids displayed promising growth inhibitory activity on NCI cancer cell lines at 10 µM. Compound 9o displayed mean GI% = 55.91%. Based on the potent activity of 9o, it was further assessed for its cytotoxic activity at five dose level and it demonstrated GI reaching 2.02 µM. Analysis of the cell cycle of the prostate cancer cell line DU145 after treatment with 9o confirmed its ability to arrest its cell cycle at the G1 phase. Moreover, 9o proved its ability to potentiate the apoptosis and necrosis of the same cell line. Furthermore, the oxindole-benzothiazole hybrids 9b, 9f and 9o showed IC = 0.70, 0.20 and 0.21 µM, respectively on CDK2. Besides, molecular docking simulation of the synthesized oxindole-benzothiazole hybrid 9o proved the expected binding mode which involves the accommodation of the oxindole moiety in the ATP binding pocket where it is involved in hydrogen bonding and hydrophobic interactions with the essential amino acids in the hinge region while the benzothiazole moiety is oriented toward the solvent region. Investigation of the physicochemical properties of the hybrids 9a-r highlights their acceptable ADME properties that can be somewhat developed for the discovery of new anticancer agents.
在当前的研究中,通过乙酰肼部分实现了氧化吲哚核心与苯并噻唑体系之间的分子杂交,以设计一系列针对CDK2用于癌症治疗的新型氧化吲哚-苯并噻唑杂化物9a-r。所得到的杂化物在10μM浓度下对NCI癌细胞系显示出有前景的生长抑制活性。化合物9o的平均GI%为55.91%。基于9o的强效活性,进一步在五个剂量水平评估其细胞毒性活性,结果表明其GI达到2.02μM。用9o处理前列腺癌细胞系DU145后对其细胞周期进行分析,证实了其将细胞周期阻滞在G1期的能力。此外,9o证明了其增强同一细胞系凋亡和坏死的能力。此外,氧化吲哚-苯并噻唑杂化物9b、9f和9o对CDK2的IC分别为0.70、0.20和0.21μM。此外,合成的氧化吲哚-苯并噻唑杂化物9o的分子对接模拟证明了预期的结合模式,其中氧化吲哚部分容纳在ATP结合口袋中,在那里它与铰链区的必需氨基酸形成氢键并发生疏水相互作用,而苯并噻唑部分则朝向溶剂区。对杂化物9a-r的物理化学性质进行研究,突出了它们可接受的ADME性质,这些性质可在一定程度上进一步开发以发现新的抗癌药物。