4.7 Article

Development of pyridazine derivatives as potential EGFR inhibitors and apoptosis inducers: Design, synthesis, anticancer evaluation, and molecular modeling studies

期刊

BIOORGANIC CHEMISTRY
卷 106, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2020.104473

关键词

Pyridazine; Pyrazoline; Antiproliferation; Epidermal growth factor receptor; Apoptosis; Molecular docking

资金

  1. Taif University, Taif, Saudi Arabia [TURSP-2020/56]

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Novel hybrids of pyridazine-pyrazoline showed significant antiproliferative activity and excellent EGFR inhibition. Specific compounds induced apoptosis in renal cancer cells and arrested the cell cycle at G2/M phase.
Novel hybrids of pyridazine-pyrazoline were synthesized aiming to develop new antiproliferative candidates. All compounds were submitted to the National Cancer Institute (NCI), USA, and many were proved to have significant antiproliferative activity. In addition, in vitro studies of the epidermal growth factor receptor (EGFR) inhibition showed that compounds IXn, IXg, IXb and IXI exhibited excellent inhibitory effect (IC50 = 0.65, 0.75, 0.82 and 0.84 mu M, respectively) compared to Erlotinib (IC50 = 0.95 mu M). The mechanistic effectiveness in cell cycle progression, apoptotic induction and gene regulation were assessed for the promising compounds IXg and IXn due to their significant EGFR inhibition. Flow cytometeric analysis indicated that compounds IXg and IXn result in increased cell numbers in phase G2/M, suggesting cell cycle arrest in phase G2/M in UO-31cells. Furthermore, real time PCR assay illustrated that compounds IXg and IXn elevated Bax/Bcl2 ratio which confirmed the mechanistic pathway of them. Moreover, the apoptotic induction of UO-31 renal cancer cells was enhanced effectively through activation of caspase-3 by compounds IXg and IXn. On the other hand, molecular docking study was performed to investigate binding mode of interaction of compounds with EGFR-PK in the active site with the aim of rationalizing its promising inhibitory activity. Finally, based on the aforementioned findings, compounds IXg and IXn could be considered as effective apoptosis modulators and promising leads for future development of new anti-renal cancer agents.

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