AI Article Synopsis

  • - Pancreatic cancer is challenging to treat due to late detection and low survival rates; researchers are exploring the use of heterocycles, specifically quinoline and pyridine ring systems, to enhance cancer drug efficacy through the Suzuki-Miyaura coupling method.
  • - The study focuses on targeting the VEGFR2 protein, which is overexpressed in pancreatic cancer, by designing quinoline-coupled pyridine compounds that can inhibit this pathway.
  • - Testing revealed that compounds 5d, 5e, and 5h showed significant inhibitory effects on pancreatic cancer cell lines, with 5e emerging as a potential lead for developing new treatments.

Article Abstract

Pancreatic cancer is the most severe among other cancers due to its late detection and less chance of survivability. Heterocycles are proven ring systems in the treatment of various cancers and this is due to the presence of two biodynamic molecules combined, which have a greater synergistic efficacy in many anticancer drugs. Quinoline and pyridine ring systems are brought together to obtain greater potency and this is achieved by coupling both using Pd-catalyst, and in the present investigation, Suzuki-Miyaura coupling (SMC) reactions are adopted to generate potent molecular entities. Pancreatic cancer is difficult to treat due to overexpression of the VEGFR2 protein. VEGFR2 is targeted to design the molecules of quinoline-coupled pyridine moieties and is docked to evaluate the protein-ligand interaction at the binding site. The binding affinity of conjugates revealed the potency and capability of ligands to inhibit the VEGFR2 pathway. The in-silico ADMET properties determined their inherent pharmacokinetic feasibility. The synthesized conjugates have been evaluated by MTT assay against the human pancreatic cancer cell lines (PANC-1). Among the series, compounds 5d, 5e, and 5h exhibited a greater inhibitory activity against the cell lines with an IC value of 82.32±1.38, 54.74±1.18 and 80.35±1.68 μM. In the present exploration, 5e exhibited greater inhibitory activity and it could be a promising lead for the development of new chemotherapeutics against pancreatic cancer.

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Source
http://dx.doi.org/10.1002/cbdv.202200622DOI Listing

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