6533b7d7fe1ef96bd1268518

RESEARCH PRODUCT

Anticancer potential of novel α,β-unsaturated γ-lactam derivatives targeting the PI3K/AKT signaling pathway.

Bartolo GabrieleIda ZiccarelliAntonio Palumbo PiccionelloLuca FrattaruoloOrazio NicolottiCosimo AltomareAnna Rita CappelloRaffaella MancusoMatteo BrindisiMarco Catto

subject

0301 basic medicineLactamsCell SurvivalAntineoplastic AgentsApoptosisBreast NeoplasmsBiochemistry03 medical and health scienceschemistry.chemical_compoundPI3K/AKT signaling pathwayPhosphatidylinositol 3-Kinases0302 clinical medicinebreast cancerCytotoxic T cellHumansα-methylene-γ-lactamsαβ-unsaturated lactamsCytotoxicityPI3K/AKT/mTOR pathwayPhosphoinositide-3 Kinase InhibitorsPharmacologychemistry.chemical_classificationBiological ProductsMolecular StructureChemistryCell growthAkt/PKB signaling pathwayCell CycleEpithelial Cells030104 developmental biologyEnzymeGene Expression RegulationApoptosis030220 oncology & carcinogenesisCancer researchLactamcytotoxicityFemaleProto-Oncogene Proteins c-akt

description

Abstract Six recently synthesized alkyl (Z)-2-(2-oxopyrrolidin-3-ylidene)acetates were evaluated for their potential as cytotoxic and anticancer agents. All compounds were tested in the ERα positive MCF-7, triple negative MDA-MB-231, and Her2+ SKBR-3 breast cancer cell lines. The most lipophilic derivatives, bearing the 4-isopropylphenyl (2) or 4-tert-butylphenyl (3) group at the γ-lactam nitrogen, proved to be cytotoxic against all the cancer cell lines tested (IC50 values ranging from 18 to 63 μM), exerting their greatest activity in SKBR-3 cells, with IC50 values of 33 and 18 μM, respectively. Biological studies showed that the cytotoxic effects of 2 and 3 are accompanied by apoptotic death in breast cancer cells, and both compounds showed no significant toxicity on healthy cells (e.g., MCF-10A) and red blood cells. An in-depth mechanistic study based on molecular biology, immunoblotting analysis and in silico docking calculations suggested that α,β-unsaturated γ-lactam derivatives could interfere with the functioning of PI3K and PDK-1, two key enzymes in the PI3K/AKT signaling pathway, whose overactivation is related to the regulation of cell growth and survival in several malignancies.

10.1016/j.bcp.2021.114659https://pubmed.ncbi.nlm.nih.gov/34147489