Salem Mostafa E, Mahrous Esraa M, Ragab Eman A, Nafie Mohamed S, Dawood Kamal M
Department of Chemistry, Faculty of Science, Cairo University, Giza, 12613, Egypt.
Department of Chemistry (Biochemistry program), Faculty of Science, Suez Canal University, Ismailia, 41522, Egypt.
BMC Chem. 2023 Jun 8;17(1):51. doi: 10.1186/s13065-023-00921-6.
3-Bromoacetyl-4-(2-naphthoyl)-1-phenyl-1H-pyrazole (6) was synthesized from 2-acetylnaphthalene and was used as a new key building block for constructing the title targets. Thus, the reaction of 6 with the thiosemicarbazones 7a-d and 9-11 afforded the corresponding simple naphthoyl-(3-pyrazolyl)thiazole hybrids 8a-d and 12 ~ 14. The symmetric bis-(2-naphthoyl-pyrazol-3-yl)thiazol-2-yl)hydrazono)methyl)phenoxy)alkanes 18a-c and 21a-c were similarly synthesized from reaction of 6 with the appropriate bis-thiosemicarbazones 17a-c and 19a-c, respectively. The synthesized two series of simple and symmetrical bis-molecular hybrid merging naphthalene, thiazole, and pyrazole were evaluated for their cytotoxicity. Compounds 18b,c and 21a showed the most potent cytotoxicity (IC = 0.97-3.57 µM) compared to Lapatinib (IC = 7.45 µM). Additionally, they were safe (non-cytotoxic) against the THLE2 cells with higher IC values. Compounds 18c exhibited promising EGFR and HER-2 inhibitory activities with IC = 4.98 and 9.85 nM, respectively, compared to Lapatinib (IC = 6.1 and 17.2 nM). Apoptosis investigation revealed that 18c significantly activated apoptotic cell death in HepG2 cells, increasing the death rate by 63.6-fold and arresting cell proliferation at the S-phase. Compound 18c upregulated P53 by 8.6-fold, Bax by 8.9-fold, caspase-3,8,9 by 9, 2.3, and 7.6-fold, while it inhibited the Bcl-2 expression by 0.34-fold. Thereby, compound 18c exhibited promising cytotoxicity against EGFR/HER2 inhibition against liver cancer.
3-溴乙酰基-4-(2-萘甲酰基)-1-苯基-1H-吡唑(6)由2-乙酰基萘合成,并用作构建目标化合物的新关键结构单元。因此,6与硫代氨基脲7a-d和9-11反应,得到相应的简单萘甲酰基-(3-吡唑基)噻唑杂化物8a-d和12~14。对称的双-(2-萘甲酰基-吡唑-3-基)噻唑-2-基)肼基)甲基)苯氧基)烷烃18a-c和21a-c分别由6与相应的双硫代氨基脲17a-c和19a-c反应类似地合成。对合成的两个系列的包含萘、噻唑和吡唑的简单和对称双分子杂化物进行了细胞毒性评估。与拉帕替尼(IC=7.45µM)相比,化合物18b、c和21a表现出最强的细胞毒性(IC=0.97-3.57µM)。此外,它们对IC值较高的THLE2细胞是安全的(无细胞毒性)。与拉帕替尼(IC=6.1和17.2 nM)相比,化合物18c分别表现出有前景的EGFR和HER-2抑制活性,IC值分别为4.98和9.85 nM。凋亡研究表明,18c在HepG2细胞中显著激活凋亡性细胞死亡,使死亡率增加63.6倍,并使细胞增殖停滞在S期。化合物18c使P53上调8.6倍,Bax上调8.9倍,caspase-3、8、9分别上调9、2.3和7.6倍,同时抑制Bcl-2表达0.34倍。因此,化合物18c对肝癌表现出有前景的针对EGFR/HER2抑制的细胞毒性。