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Green synthesis, in silico modeling, and biological evaluation of N-substituted (Z)-5-arylidene imidazolidine/thiazolidine-2,4-dione/4-thione derivatives catalyzed by Bu SO3H core-shell nanostructures.
Akhavan, Malihe; Esam, Zohreh; Mirshafa, Atefeh; Lotfi, Maryam; Pourmand, Saeed; Ashori, Froug; Rabani, Motahare; Ekbatani, Golbahar; Tourani, Saeed; Beheshti, Reza; Keshavarzian, Zahra; Ghanbarimasir, Zahra; Bekhradnia, Ahmadreza.
Afiliación
  • Akhavan M; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Esam Z; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Mirshafa A; Department of Medicinal Chemistry, School of Pharmacy, Babol University of Medical Sciences Babol Iran.
  • Lotfi M; Ramsar Campus, Mazandaran University of Medical Sciences Ramsar Iran.
  • Pourmand S; Department of Chemistry, NOVA, School of Science and Technology, Universidade NOVA de Lisboa Portugal.
  • Ashori F; Department of Chemical Engineering, Tabriz University of Chemical Engineering Tabriz Iran.
  • Rabani M; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Ekbatani G; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Tourani S; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Beheshti R; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Keshavarzian Z; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Ghanbarimasir Z; Pharmaceutical Sciences Research Center, Department of Medicinal Chemistry, Mazandaran University of Medical Sciences Sari Iran abekhradnia@mazums.ac.ir abekhradnia@gmail.com.
  • Bekhradnia A; Department of Organic Chemistry, Faculty of Chemistry, University of Mazandaran Babolsar Iran.
RSC Adv ; 14(32): 22916-22938, 2024 Jul 19.
Article en En | MEDLINE | ID: mdl-39035715
ABSTRACT
In this effort, the immobilization of guanidine-sulfonate on the surface of Fe3O4 MNPs (magnetic nanoparticles) as a novel acid nanocatalyst has been successfully reported for the synthesis of N-substituted (Z)-5-arylidene thiazolidine-2,4-dione and related cyclic derivatives, including rhodanine (RHD) and hydantoin (HYD) via a one-pot multiple-component reaction under green conditions. The products were characterized by SEM, TEM, TGA, EDS, BET techniques, VSM, and FTIR. The novel compounds synthesized using this methodology, designated as series La (1-9), Lb (1-8), and Lc (1-8), were subjected to anticancer screening against A549 and MCF7cell lines via MTT assays. Notably, several compounds (L1a, L2a, L3a, L1b, L2b, L3b, and L4b) exhibited potent antiproliferative activities, with observed IC50 values as low as 1.23 µM and 1.02 µM against MCF-7 cells, thereby outperforming the established anticancer drugs doxorubicin and cisplatin. Molecular docking and dynamics simulations revealed that ligands L1a, L2a, and L3a strongly interact with the protein target 3CD8, with L1a displaying significant hydrophobic and hydrogen bonding interactions and L2a engaging in unique pi-pi stacking with key residues. For protein 2WGJ, ligand L4b exhibited exceptional binding affinity, characterized by robust hydrogen bonding, hydrophobic interactions, and additional stabilizing mechanisms such as water bridges and pi interactions. Hence, N-substituted (Z)-5-arylidene thiazolidine-2,4-dione and its cyclic derivatives may serve as promising candidates for further exploration in the development of new multi-target cancer chemotherapy agents. These findings introduce promising anticancer agents and establish Fe3O4 MNPs as a versatile and environmentally sustainable catalytic platform in drug discovery.

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article