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Updated: Jan 8, 2026

Functionalized Spirocyclic Heterocycle Synthesis and Cytotoxicity Assay
Published on: February 9, 2021
Quinoline and coumarin isoxazole derivatives: synthesis, antitumor evaluation and molecular docking studies with
Martina Piškor1, Marina Ter1, Leentje Persoons2
1Department of Organic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb Marulićev trg 19 10000 Zagreb Croatia sraic@fkit.unizg.hr.
Abstract:
Resistance to conventional therapies in pancreatic and hematologic malignancies highlights the need for novel agents that selectively induce tumor cell death. This study presents the design, synthesis, and evaluation of new quinoline- and coumarin-derived isoxazole analogs (7a-e, 8a-f, 9a-e) and their Re(i) and Ru(ii) complexes (7bRe, 9bRe, 7bRu, 9bRu). Antiproliferative assays against eight human cancer cell lines and noncancerous PBMCs identified quinoline amidoxime 8f as particularly potent, with IC50 values of 2.1-4.7 µM against hematologic cancers (DND-41, HL-60, Z-138) and pancreatic adenocarcinoma (Capan-1), with selectivity indices of up to 48. Permeability and metabolic stability studies showed high membrane permeability and moderate clearance for 8f. Molecular docking, validated by redocking of J1Q (PDB ID: 6QGK), confirmed that 8f forms stable, energetically favorable complexes with Bcl-2 (ΔG_bind = -84.98 kcal mol-1). These results support 8f as a promising lead compound for further development as a selective Bcl-2-targeted anticancer agent.
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