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Functionalized Spirocyclic Heterocycle Synthesis and Cytotoxicity Assay
Published on: February 9, 2021
Synthesis and biological evaluation of 1-phenyl-4,6-dihydrobenzo[b]pyrazolo[3,4-d]azepin-5(1H)-one/thiones as
Ramulu Parupalli1, Ravikumar Akunuri1, Akella Spandana2
1Department of Chemical Sciences, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad 500037, Telangana State, India.
Abstract:
Cancer is associated with uncontrolled cell proliferation invading adjoining tissues and organs. Despite the availability of several chemotherapeutic agents, the constant search for newer approaches and drugs is necessitated owing to the ever-growing challenge of resistance. Over the years, DNA has emerged as an important druggable therapeutic drug due to its role in critical cellular processes such as cell division and maintenance. Further, evading apoptosis stands out as a hallmark of cancer. Hence, designing new compounds that would target DNA and induce apoptosis plays an important role in cancer therapy. In the current work, we carried out the synthesis and anticancer evaluation of 1-aryl-4,6-dihydrobenzo[b]pyrazolo[3,4-d]azepin-5(1H)-ones/thiones (26 compounds) against selected human cancer cell lines. Among these, compounds 8ae, 8ad, 8cf, 10ad and Kenpaullone have shown good inhibitory properties against HeLa cells (IC50 < 2 µM) with good selectivity over the non-cancerous human embryonic kidney (Hek293T) cells. In cell cycle analysis, the compounds 8ad and 8cf have exhibited G2/M cell cycle arrest in HeLa cells. In addition, the compounds 8ad and 8cf induced apoptosis in a dose-dependent manner in the Annexin-V FITC staining assay. The DAPI staining clearly demonstrated the condensed and fragmented nuclei in 8ad, 8cf, 8ae and Kenpaullone-treated HeLa cells. In addition, these compounds strongly suppressed the healing after 48 h in in vitro cell migration assay. The DNA binding experiments indicated that compounds 8ae, 8cf, and 8ad as well as Kenpaullone interact with double-stranded DNA by binding in grooves which may interrupt the DNA replication and kill fast-growing cells. Molecular docking studies revealed the binding pose of 8ad and Kenpaullone at HT1 binding pocket of double-stranded DNA. Compounds 8ad and 8cf demonstrated moderate topo II inhibition which could be a possible reason for their anticancer properties. Compounds 8ad and 8cf may cause the topo II and DNA covalent complex, which leads to the inhibition of DNA replication and transcription. This eventually increases the DNA damage in cells and promotes cell apoptosis. With the above interesting biological profile, the new 1-aryl-2,6-dihydrobenzo[b]pyrazolo[3,4-d]azepin-5(4H)-one/thione derivatives have emerged as promising leads for the discovery of new anticancer agents.
Insights
New benzo[b]pyrazolo[3,4-d]azepinone/thione derivatives show potent anticancer activity. These compounds target DNA and induce apoptosis, offering promising leads for novel cancer therapies against drug-resistant cancer cells.
Area of Science:
- Medicinal Chemistry
- Molecular Biology
- Cancer Research
Background:
- Cancer is characterized by uncontrolled cell proliferation and resistance to chemotherapy.
- DNA is a critical target for cancer therapeutics due to its role in cell division.
- Inducing apoptosis is a key strategy in cancer therapy.
Purpose of the Study:
- To synthesize and evaluate novel 1-aryl-4,6-dihydrobenzo[b]pyrazolo[3,4-d]azepin-5(1H)-ones/thiones for anticancer properties.
- To investigate the mechanism of action of promising anticancer compounds.
- To identify potential new drug leads for cancer treatment.
Main Methods:
- Synthesis of 26 novel benzo[b]pyrazolo[3,4-d]azepinone/thione derivatives.
- Anticancer evaluation against human cancer cell lines (HeLa, Hek293T).
- Cell cycle analysis, apoptosis assays (Annexin-V FITC, DAPI staining), cell migration assays, DNA binding studies, molecular docking, and topoisomerase II inhibition assays.
Main Results:
- Compounds 8ae, 8ad, 8cf, 10ad, and Kenpaullone exhibited significant inhibition against HeLa cells (IC50 < 2 µM) with selectivity over non-cancerous cells.
- Compounds 8ad and 8cf induced G2/M cell cycle arrest and apoptosis in HeLa cells.
- DNA binding studies indicated groove binding, while compounds 8ad and 8cf showed moderate topoisomerase II inhibition, suggesting DNA damage and apoptosis induction.
Conclusions:
- The synthesized 1-aryl-2,6-dihydrobenzo[b]pyrazolo[3,4-d]azepin-5(4H)-one/thione derivatives are promising anticancer agents.
- These compounds exhibit anticancer activity through DNA interaction, apoptosis induction, and cell cycle arrest.
- Further development of these derivatives could lead to novel therapeutic strategies for cancer treatment.
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