In silico screening, synthesis, characterization and biological evaluation of novel anticancer agents as potential COX-2 inhibitors. 2023

Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
Tumor Biology, ICMR-National Institute of Pathology, New Delhi, 110029, India.

BACKGROUND Cyclooxygenase enzyme is frequently overexpressed in various types of cancer and found to play a crucial role in poor prognosis in cancer patients. In current research, we have reported the new COX-2 inhibitors for cancer treatment using computer-aided drug design and experimental validation. METHODS A total of 12,795 compounds from the different databases were used to screen against the COX-2 enzyme. It perceived three new compounds with better binding affinity to the enzyme. Afterwards, physicochemical properties and in silico bioactivity were assessed for efficacy, safety, and structural features required for binding. The molecules were synthesized and confirmed by spectroscopic techniques. Later on, molecules were evaluated for their anti-cancer activity using MCF-7, MDA-MB-231 and SiHa cancer cell lines. RESULTS Compound ZINC5921547 and ZINC48442590 (4a, and 4b) reduced the MCF-7, MDA-MB-231, and SiHa cells proliferation potently than parent compounds. The PG-E2 estimation shown, both compounds act through the COX-2 PGE2 axis. Compound 4a and 4b block the cell cycle at G1-S phase and induce cancer cell death. CONCLUSIONS We concluded that compounds 4a and 4b effectively promotes cancer cell death via COX-2 PGE2 axis, and further in vivo studies can be evaluated for development in both compounds as anticancer agents. The compilation of this information will help us to generate better outcome through robust computational methods. The high-quality experimental results may pave the way for identifying effective drug candidates for cancer treatment.

UI MeSH Term Description Entries
D004354 Drug Screening Assays, Antitumor Methods of investigating the effectiveness of anticancer cytotoxic drugs and biologic inhibitors. These include in vitro cell-kill models and cytostatic dye exclusion tests as well as in vivo measurement of tumor growth parameters in laboratory animals. Anticancer Drug Sensitivity Tests,Antitumor Drug Screens,Cancer Drug Tests,Drug Screening Tests, Tumor-Specific,Dye Exclusion Assays, Antitumor,Anti-Cancer Drug Screens,Antitumor Drug Screening Assays,Tumor-Specific Drug Screening Tests,Anti Cancer Drug Screens,Anti-Cancer Drug Screen,Antitumor Drug Screen,Cancer Drug Test,Drug Screen, Anti-Cancer,Drug Screen, Antitumor,Drug Screening Tests, Tumor Specific,Drug Screens, Anti-Cancer,Drug Screens, Antitumor,Drug Test, Cancer,Drug Tests, Cancer,Screen, Anti-Cancer Drug,Screen, Antitumor Drug,Screens, Anti-Cancer Drug,Screens, Antitumor Drug,Test, Cancer Drug,Tests, Cancer Drug,Tumor Specific Drug Screening Tests
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000970 Antineoplastic Agents Substances that inhibit or prevent the proliferation of NEOPLASMS. Anticancer Agent,Antineoplastic,Antineoplastic Agent,Antineoplastic Drug,Antitumor Agent,Antitumor Drug,Cancer Chemotherapy Agent,Cancer Chemotherapy Drug,Anticancer Agents,Antineoplastic Drugs,Antineoplastics,Antitumor Agents,Antitumor Drugs,Cancer Chemotherapy Agents,Cancer Chemotherapy Drugs,Chemotherapeutic Anticancer Agents,Chemotherapeutic Anticancer Drug,Agent, Anticancer,Agent, Antineoplastic,Agent, Antitumor,Agent, Cancer Chemotherapy,Agents, Anticancer,Agents, Antineoplastic,Agents, Antitumor,Agents, Cancer Chemotherapy,Agents, Chemotherapeutic Anticancer,Chemotherapy Agent, Cancer,Chemotherapy Agents, Cancer,Chemotherapy Drug, Cancer,Chemotherapy Drugs, Cancer,Drug, Antineoplastic,Drug, Antitumor,Drug, Cancer Chemotherapy,Drug, Chemotherapeutic Anticancer,Drugs, Antineoplastic,Drugs, Antitumor,Drugs, Cancer Chemotherapy
D013329 Structure-Activity Relationship The relationship between the chemical structure of a compound and its biological or pharmacological activity. Compounds are often classed together because they have structural characteristics in common including shape, size, stereochemical arrangement, and distribution of functional groups. Relationship, Structure-Activity,Relationships, Structure-Activity,Structure Activity Relationship,Structure-Activity Relationships
D015195 Drug Design The molecular designing of drugs for specific purposes (such as DNA-binding, enzyme inhibition, anti-cancer efficacy, etc.) based on knowledge of molecular properties such as activity of functional groups, molecular geometry, and electronic structure, and also on information cataloged on analogous molecules. Drug design is generally computer-assisted molecular modeling and does not include PHARMACOKINETICS, dosage analysis, or drug administration analysis. Computer-Aided Drug Design,Computerized Drug Design,Drug Modeling,Pharmaceutical Design,Computer Aided Drug Design,Computer-Aided Drug Designs,Computerized Drug Designs,Design, Pharmaceutical,Drug Design, Computer-Aided,Drug Design, Computerized,Drug Designs,Drug Modelings,Pharmaceutical Designs
D015232 Dinoprostone The most common and most biologically active of the mammalian prostaglandins. It exhibits most biological activities characteristic of prostaglandins and has been used extensively as an oxytocic agent. The compound also displays a protective effect on the intestinal mucosa. PGE2,PGE2alpha,Prostaglandin E2,Prostaglandin E2alpha,PGE2 alpha,Prepidil Gel,Prostaglandin E2 alpha,Prostenon,E2 alpha, Prostaglandin,E2, Prostaglandin,E2alpha, Prostaglandin,Gel, Prepidil,alpha, PGE2,alpha, Prostaglandin E2
D015394 Molecular Structure The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds. Structure, Molecular,Molecular Structures,Structures, Molecular
D045744 Cell Line, Tumor A cell line derived from cultured tumor cells. Tumor Cell Line,Cell Lines, Tumor,Line, Tumor Cell,Lines, Tumor Cell,Tumor Cell Lines
D049109 Cell Proliferation All of the processes involved in increasing CELL NUMBER including CELL DIVISION. Cell Growth in Number,Cellular Proliferation,Cell Multiplication,Cell Number Growth,Growth, Cell Number,Multiplication, Cell,Number Growth, Cell,Proliferation, Cell,Proliferation, Cellular
D051546 Cyclooxygenase 2 An inducibly-expressed subtype of prostaglandin-endoperoxide synthase. It plays an important role in many cellular processes and INFLAMMATION. It is the target of COX2 INHIBITORS. COX-2 Prostaglandin Synthase,Cyclo-Oxygenase II,Cyclooxygenase-2,PGHS-2,PTGS2,Prostaglandin H Synthase-2,COX 2 Prostaglandin Synthase,Cyclo Oxygenase II,Prostaglandin H Synthase 2,Prostaglandin Synthase, COX-2,Synthase, COX-2 Prostaglandin

Related Publications

Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
December 2014, Archiv der Pharmazie,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
February 2020, European journal of medicinal chemistry,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
September 2022, RSC advances,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
May 2008, Archives of pharmacal research,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
August 2020, Molecular diversity,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
March 2005, Journal of medicinal chemistry,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
June 2008, Organic & biomolecular chemistry,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
January 2006, Journal of medicinal chemistry,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
December 2014, Bioorganic chemistry,
Ankita Sahu, and Dibyabhaba Pradhan, and Babita Veer, and Sumit Kumar, and Ram Singh, and Khalid Raza, and Moshahid A Rizvi, and Arun Kumar Jain, and Saurabh Verma
March 2012, Molecules (Basel, Switzerland),
Copied contents to your clipboard!