Antioxidant activity of 4-methylcoumarins

Author:

Pedersen Jens Z1,Oliveira Cristina2,Incerpi Sandra3,Kumar Vineet45,Fiore Anna Maria3,De Vito Paolo1,Prasad Ashok K4,Malhotra Sanjay V5,Parmar Virinder S4,Saso Luciano2

Affiliation:

1. Department of Biology, University of Rome ‘Tor Vergata’, Italy

2. Department of Human Physiology and Pharmacology, Sapienza University of Rome, Italy

3. Department of Biology, University of Rome ‘Roma Tre’, Italy

4. Department of Chemistry, University of Delhi, India

5. Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, USA

Abstract

Abstract Polyphenolic coumarins are known to act as antioxidants in biological systems, but it is difficult to distinguish their antioxidant activity from the many other effects they produce in cells. We have determined the radical scavenging capacity of 22 structurally related natural and synthetic 4-methylcoumarins, by measuring their reaction with radicals, galvinoxyl and 2,2-diphenyl-1-picrylhydrazyl, using electron paramagnetic resonance spectroscopy. Efficient antioxidant activity of 4-methylcoumarins in cells was verified using the DCF fluorescent probe assay for determination of intracellular reactive oxygen species levels. As expected, the o-dihydroxysubstituted coumarins were found to be excellent radical scavengers and better than the m-dihydroxysubstituted or monohydroxysubstituted analogues, but surprisingly the corresponding o-diacetoxy derivatives also turned out to be good scavengers, even in the absence of an esterase. Another unexpected result was that the anti-oxidant efficiency of 4-methylcoumarins could be modulated by introducing an ethoxycarbonyl-ethyl substituent at the C-3 position; this effect cannot be explained by simple electron donating/withdrawing properties. Coumarin concentrations of 10 μm or less were used in all experiments, corresponding to the levels relevant for therapeutic purposes. Considering that 4-methylcoumarins, in contrast to many other coumarins, are not metabolized to toxic epoxide intermediates, these results indicate promising new strategies for the design of non-toxic antioxidant coumarin-based drugs.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

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