Combined Acylselenourea–Diselenide Structures: New Potent and Selective Antitumoral Agents as Autophagy Activators

ACS Medicinal Chemistry Letters
2018.0

Abstract

A series of 16 new diselenide-acylselenourea conjugates have been designed following the fragment-based drug strategy. Compound in vitro cytotoxic potential was evaluated against six human cancer cell lines and two nonmalignant derived cell lines with the aim of determining their potency and selectivity. Nine derivatives exhibited GI50 values under 10 μM in at least four cancer cell lines. A clear gap situated phenyl substitution over heterocyclic moieties in terms of selectivity. Among carbocyclic compounds, derivatives 2 and 7 significantly inhibited cell growth of breast adenocarcinoma cells with GI50 values of 1.30 and 0.15 nM, respectively, with selectivity indexes 12 and 121 times higher than those obtained for doxorubicin. Preliminary mechanistic studies indicated that compounds 2 and 7 induce cell cycle arrest and autophagy-dependent cell death evidenced by the blockage of cell death with pretreatment with wortmannin or chloroquine and confirmed by the upregulation of the markers Beclin1 and LC3B in MCF-7 cells.

Knowledge Graph

Similar Paper

Combined Acylselenourea–Diselenide Structures: New Potent and Selective Antitumoral Agents as Autophagy Activators
ACS Medicinal Chemistry Letters 2018.0
Chalcogen containing heterocyclic scaffolds: New hybrids with antitumoral activity
European Journal of Medicinal Chemistry 2016.0
Novel seleno- and thio-urea derivatives with potent in vitro activities against several cancer cell lines
European Journal of Medicinal Chemistry 2016.0
Combinatorial synthesis, in silico , molecular and biochemical studies of tetrazole-derived organic selenides with increased selectivity against hepatocellular carcinoma
European Journal of Medicinal Chemistry 2016.0
Novel selenadiazole derivatives as selective antitumor and radical scavenging agents
European Journal of Medicinal Chemistry 2018.0
Novel pyrimidinic selenourea induces DNA damage, cell cycle arrest, and apoptosis in human breast carcinoma
European Journal of Medicinal Chemistry 2018.0
Acylhydrazone derivatives as potential anticancer agents: Synthesis, bio-evaluation and mechanism of action
Bioorganic & Medicinal Chemistry Letters 2015.0
New organoselenides (NSAIDs-Se derivatives) as potential anticancer agents: Synthesis, biological evaluation and in silico calculations
European Journal of Medicinal Chemistry 2021.0
Synthesis and antiproliferative activity of novel symmetrical alkylthio- and alkylseleno-imidocarbamates
European Journal of Medicinal Chemistry 2011.0
Design, Synthesis, and Biological Evaluation of Novel Selenium (Se-NSAID) Molecules as Anticancer Agents
Journal of Medicinal Chemistry 2016.0