Novel synthetic acridine derivatives as potent DNA-binding and apoptosis-inducing antitumor agents

Bioorganic & Medicinal Chemistry
2013.0

Abstract

Acridine derivatives have been explored as DNA-binding anticancer agents. Some derivatives show undesired pharmacokinetic properties and new derivatives need to be explored. In this work, a series of novel acridine analogues were synthesized by modifying previously unexplored linkers between the acridine and benzene groups and their antiproliferative activity and the DNA-binding ability were evaluated. Among these derivatives, compound 5c demonstrated DNA-binding capability and topoisomerase I inhibitory activity. In K562 cell lines, 5c induced apoptosis through mitochondria-dependent intrinsic pathways. These data suggested that compound 5c and other acridine derivatives with modified linkers between the acridine and benzene groups might be potent DNA-binding agents.

Knowledge Graph

Similar Paper

Novel synthetic acridine derivatives as potent DNA-binding and apoptosis-inducing antitumor agents
Bioorganic & Medicinal Chemistry 2013.0
Synthesis and biological evaluation of benzimidazole acridine derivatives as potential DNA-binding and apoptosis-inducing agents
Bioorganic & Medicinal Chemistry 2015.0
Molecular design, synthesis and biological research of novel pyridyl acridones as potent DNA-binding and apoptosis-inducing agents
European Journal of Medicinal Chemistry 2015.0
Synthesis and antiproliferative activity of 9-benzylamino-6-chloro-2-methoxy-acridine derivatives as potent DNA-binding ligands and topoisomerase II inhibitors
European Journal of Medicinal Chemistry 2016.0
Design, synthesis and biological research of novel N-phenylbenzamide-4-methylamine acridine derivatives as potential topoisomerase I/II and apoptosis-inducing agents
Bioorganic & Medicinal Chemistry Letters 2019.0
Design, Synthesis, and Biological Properties of New Bis(acridine-4-carboxamides) as Anticancer Agents
Journal of Medicinal Chemistry 2003.0
Rational Design, Synthesis, and Biological Evaluation of Bis(pyrimido[5,6,1-de]acridines) and Bis(pyrazolo[3,4,5-kl]acridine-5-carboxamides) as New Anticancer Agents
Journal of Medicinal Chemistry 2004.0
Synthesis, chemical characterization of novel 1,3-dimethyl acridones as cytotoxic agents, and their DNA-binding studies
Medicinal Chemistry Research 2010.0
Synthesis, Antitumor Cytotoxicity, and DNA-Binding of Novel N-5,2-Di(ω-aminoalkyl)-2,6-dihydropyrazolo[3,4,5-kl]acridine-5-carboxamides
Journal of Medicinal Chemistry 2001.0
Structure-activity relationship of novel acridone derivatives as antiproliferative agents
Bioorganic & Medicinal Chemistry 2021.0