Biochemistry (Washington) 2013-10-22

Stable and potent analogues derived from the modification of the dicarbonyl moiety of curcumin.

Soumyananda Chakraborti, Gopa Dhar, Vishnu Dwivedi, Amlan Das, Asim Poddar, Gopal Chakraborti, Gautam Basu, Pinak Chakrabarti, Avadhesha Surolia, Bhabatarak Bhattacharyya

文献索引:Biochemistry 52(42) , 7449-60, (2013)

全文:HTML全文

摘要

Curcumin has shown promising therapeutic utilities for many diseases, including cancer; however, its clinical application is severely limited because of its poor stability under physiological conditions. Here we find that curcumin also loses its activity instantaneously in a reducing environment. Curcumin can exist in solution as a tautomeric mixture of keto and enol forms, and the enol form was found to be responsible for the rapid degradation of the compound. To increase the stability of curcumin, several analogues were synthesized in which the diketone moiety of curcumin was replaced by isoxazole (compound 2) and pyrazole (compound 3) groups. Isoxazole and pyrazole curcumins were found to be extremely stable at physiological pH, in addition to reducing atmosphere, and they can kill cancer cells under serum-depleted condition. Using molecular modeling, we found that both compounds 2 and 3 could dock to the same site of tubulin as the parent molecule, curcumin. Interestingly, compounds 2 and 3 also show better free radical scavenging activity than curcumin. Altogether, these results strongly suggest that compounds 2 and 3 could be good replacements for curcumin in future drug development.


相关化合物

  • 姜黄素
  • 吡唑

相关文献:

Mucoadhesive films containing chitosan-coated nanoparticles: a new strategy for buccal curcumin release.

2014-11-01

[J. Pharm. Sci. 103(11) , 3764-71, (2014)]

Enhancing the anti-inflammatory activity of chalcones by tuning the Michael acceptor site.

2015-03-14

[Org. Biomol. Chem. 13(10) , 3040-7, (2015)]

An antifungal mechanism of curcumin lies in membrane-targeted action within Candida albicans.

2014-11-01

[IUBMB Life 66(11) , 780-5, (2015)]

Identification of the cellular mechanisms that modulate trafficking of frizzled family receptor 4 (FZD4) missense mutants associated with familial exudative vitreoretinopathy.

2014-06-01

[Invest. Ophthalmol. Vis. Sci. 55(6) , 3423-31, (2014)]

Improved plasma membrane expression of the trafficking defective P344R mutant of muscle, skeletal, receptor tyrosine kinase (MuSK) causing congenital myasthenic syndrome.

2015-03-01

[Int. J. Biochem. Cell Biol. 60 , 119-29, (2015)]

更多文献...