Curcumin-I Knoevenagel’s condensates and their Schiff’s bases as anticancer agents: Synthesis, pharmacological and simulation studies

Bioorganic & Medicinal Chemistry
2013.0

Abstract

Pyrazolealdehydes (4a-d), Knoevenagel's condensates (5a-d) and Schiff's bases (6a-d) of curcumin-I were synthesized, purified and characterized. Hemolysis assays, cell line activities, DNA bindings and docking studies were carried out. These compounds were lesser hemolytic than standard drug doxorubicin. Minimum cell viability (MCF-7; wild) observed was 59% (1.0 μg/mL) whereas the DNA binding constants ranged from 1.4×10(3) to 8.1×10(5) M(-1). The docking energies varied from -7.30 to -13.4 kcal/mol. It has been observed that DNA-compound adducts were stabilized by three governing forces (Van der Wall's, H-bonding and electrostatic attractions). It has also been observed that compounds 4a-d preferred to enter minor groove while 5a-d and 6a-d interacted with major grooves of DNA. The anticancer activities of the reported compounds might be due to their interactions with DNA. These results indicated the bright future of the reported compounds as anticancer agents.

Knowledge Graph

Similar Paper

Curcumin-I Knoevenagel’s condensates and their Schiff’s bases as anticancer agents: Synthesis, pharmacological and simulation studies
Bioorganic & Medicinal Chemistry 2013.0
Synthesis, DNA binding, hemolytic, and anti-cancer assays of curcumin I-based ligands and their ruthenium(III) complexes
Medicinal Chemistry Research 2013.0
Synthesis and biological evaluation of novel curcumin analogues as anti-inflammatory, anti-cancer and anti-oxidant agents
Medicinal Chemistry Research 2012.0
Curcumin analogues as possible anti-proliferative & anti-inflammatory agents
European Journal of Medicinal Chemistry 2011.0
Synthesis of substituted benzimidazolyl curcumin mimics and their anticancer activity
Bioorganic & Medicinal Chemistry Letters 2012.0
Synthesis and biological evaluation of some novel triazole hybrids of curcumin mimics and their selective anticancer activity against breast and prostate cancer cell lines
Bioorganic & Medicinal Chemistry Letters 2016.0
Curcumin Induces High Levels of Topoisomerase I− and II−DNA Complexes in K562 Leukemia Cells
Journal of Natural Products 2007.0
Synthesis and antitumor properties of novel curcumin analogs
Medicinal Chemistry Research 2014.0
Synthesis and evaluation of curcumin analogues as cytotoxic agents
Medicinal Chemistry Research 2010.0
Synthesis, biological evaluation and molecular docking studies of resveratrol derivatives possessing curcumin moiety as potent antitubulin agents
Bioorganic & Medicinal Chemistry 2012.0