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Combination of Sulindac and Dichloroacetate Kills Cancer Cells via Oxidative Damage

Overview of attention for article published in PLOS ONE, July 2012
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Title
Combination of Sulindac and Dichloroacetate Kills Cancer Cells via Oxidative Damage
Published in
PLOS ONE, July 2012
DOI 10.1371/journal.pone.0039949
Pubmed ID
Authors

Kasirajan Ayyanathan, Shailaja Kesaraju, Ken Dawson-Scully, Herbert Weissbach

Abstract

Sulindac is an FDA-approved non-steroidal anti-inflammatory drug with documented anticancer activities. Our recent studies showed that sulindac selectively enhanced the killing of cancer cells exposed to oxidizing agents via production of reactive oxygen species (ROS) resulting in mitochondrial dysfunction. This effect of sulindac and oxidative stress on cancer cells could be related to the defect in respiration in cancer cells, first described by Warburg 50 years ago, known as the Warburg effect. We postulated that sulindac might enhance the selective killing of cancer cells when combined with any compound that alters mitochondrial respiration. To test this hypothesis we have used dichloroacetate (DCA), which is known to shift pyruvate metabolism away from lactic acid formation to respiration. One might expect that DCA, since it stimulates aerobic metabolism, could stress mitochondrial respiration in cancer cells, which would result in enhanced killing in the presence of sulindac. In this study, we have shown that the combination of sulindac and DCA enhances the selective killing of A549 and SCC25 cancer cells under the conditions used. As predicted, the mechanism of killing involves ROS production, mitochondrial dysfunction, JNK signaling and death by apoptosis. Our results suggest that the sulindac-DCA drug combination may provide an effective cancer therapy.

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Geographical breakdown

Country Count As %
Canada 2 4%
Australia 1 2%
Germany 1 2%
United Kingdom 1 2%
India 1 2%
Unknown 41 87%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 11 23%
Researcher 10 21%
Student > Master 5 11%
Professor 4 9%
Student > Doctoral Student 2 4%
Other 8 17%
Unknown 7 15%
Readers by discipline Count As %
Agricultural and Biological Sciences 15 32%
Medicine and Dentistry 15 32%
Biochemistry, Genetics and Molecular Biology 4 9%
Pharmacology, Toxicology and Pharmaceutical Science 2 4%
Chemistry 2 4%
Other 3 6%
Unknown 6 13%