DNA-binding and in vitro cytotoxic activity of platinum(II) complexes of curcumin and caffeine
-
Add time:08/27/2019 Source:sciencedirect.com
Three Pt(II) complexes containing the natural ligands curcumin and caffeine, namely [Pt(curc)(PPh3)2]Cl (1), [PtCl(curc)(DMSO)] (2) (curc = deprotonated curcumin) and trans-[Pt(caffeine)Cl2(DMSO)] (3), were synthesized and fully characterized. The data obtained suggest that, for both 1 and 2, the anion of curcumin is coordinated to the platinum ion via the oxygen atoms of the β-diketonate moiety. Spectroscopic features reveal that in 2 and 3, a DMSO molecule is S-bonded to the metal centre. For 3, all data indicate a square-planar geometry formed by a 9-N bonded caffeine, two trans chloride anions and a DMSO. The three complexes undergo changes in solution upon incubation for 24 h; 1 and 2 release curcumin while 3 isomerizes from trans to cis configuration. The DNA-binding and cytotoxic properties of 1–3 were evaluated in vitro. Despite their structural similarity, curcuminate-containing 1 and 2 exhibit distinct DNA interactions. While 1 appears to intercalate between nucleobase pairs, inducing the oxidative degradation of the biomolecule, 2 behaves as a groove binder, by means of electrostatic forces. Caffeine-containing 3 exhibits a behaviour that is comparable to that of 2. Complexes 1 and 2 showed moderate to high cytotoxicity and selectivity against several cancer cell lines, while 3 is inactive. Compounds 1 and 2 can be further activated by visible-light irradiation.
We also recommend Trading Suppliers and Manufacturers of caffeine dimer (cas 138455-22-8). Pls Click Website Link as below: cas 138455-22-8 suppliers
Prev:Original articleCoffee, tea, caffeine, and risk of nonmelanoma skin cancer in a Chinese population: The Singapore Chinese Health Study
Next:Coffee, caffeine, chlorogenic acid, and the purinergic system) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Research paperAnalysis of the dehydration process of caffeine using backscattering and transmission Raman spectroscopy09/01/2019
- BiochemistryDesferrioxamine-caffeine shows improved efficacy in chelating iron and depleting cancer stem cells08/31/2019
- Characterisation of β-lactoglobulin nanoparticles and their binding to caffeine08/30/2019
- Research paperCaffeine inhibition of GLUT1 is dependent on the activation state of the transporter08/29/2019
- Coffee, caffeine, chlorogenic acid, and the purinergic system08/28/2019
- Original articleCoffee, tea, caffeine, and risk of nonmelanoma skin cancer in a Chinese population: The Singapore Chinese Health Study08/26/2019
- DSC study of the system o-acetylsalicylic acid–caffeine and thermodynamic modelling of the system o-acetylsalicylic acid–caffeine–paracetamol08/25/2019
- Effects of caffeine on the structure and conformation of DNA: A force spectroscopy study08/24/2019
- Interaction of caffeine dimer (cas 138455-22-8)s with water molecules08/23/2019
-
Health and Chemical more >
-
Related Products


