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Resveratrol Interferes with Fura-2 Intracellular Calcium Measurements

Overview
Journal J Fluoresc
Specialties Biophysics
Chemistry
Date 2013 Oct 24
PMID 24151033
Citations 8
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Abstract

Resveratrol, a naturally occurring polyphenol found in some fruits and especially in grapes, has been reported to provide diverse health benefits. Resveratrol's mechanism of action is the subject of many investigations, and some studies using the ratiometric calcium indicator Fura-2 suggest that it modulates cellular calcium responses. In the current study, contradictory cellular calcium responses to resveratrol applied at concentrations exceeding 10 μM were observed during in vitro imaging studies depending on the calcium indicator used, with Fura-2 indicating an increase in intracellular calcium while Fluo-4 and the calcium biosensor YC3.60 indicated no response. When cells loaded with Fura-2 were treated with 100 μM resveratrol, excitation at 340 nm resulted in a large intensity increase at 510 nm, but the expected concurrent decline with 380 nm excitation was not observed. Pre-treatment of cells with the calcium chelator BAPTA-AM did not prevent a rise in the 340/380 ratio when resveratrol was present, but it did prevent an increase in 340/380 when ATP was applied, suggesting that the resveratrol response was an artifact. Cautious data interpretation is recommended from imaging experiments using Fura-2 concurrently with resveratrol in calcium imaging experiments.

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References
1.
Campos-Toimil M, Elies J, Alvarez E, Verde I, Orallo F . Effects of trans- and cis-resveratrol on Ca2+ handling in A7r5 vascular myocytes. Eur J Pharmacol. 2007; 577(1-3):91-9. DOI: 10.1016/j.ejphar.2007.08.003. View

2.
Elies J, Cuinas A, Garcia-Morales V, Orallo F, Campos-Toimil M . Trans-resveratrol simultaneously increases cytoplasmic Ca(2+) levels and nitric oxide release in human endothelial cells. Mol Nutr Food Res. 2011; 55(8):1237-48. DOI: 10.1002/mnfr.201100240. View

3.
Qian C, Ma J, Zhang P, Luo A, Wang C, Ren Z . Resveratrol attenuates the Na(+)-dependent intracellular Ca(2+) overload by inhibiting H(2)O(2)-induced increase in late sodium current in ventricular myocytes. PLoS One. 2012; 7(12):e51358. PMC: 3521760. DOI: 10.1371/journal.pone.0051358. View

4.
Paredes R, Etzler J, Watts L, Zheng W, Lechleiter J . Chemical calcium indicators. Methods. 2008; 46(3):143-51. PMC: 2666335. DOI: 10.1016/j.ymeth.2008.09.025. View

5.
Nagai T, Yamada S, Tominaga T, Ichikawa M, Miyawaki A . Expanded dynamic range of fluorescent indicators for Ca(2+) by circularly permuted yellow fluorescent proteins. Proc Natl Acad Sci U S A. 2004; 101(29):10554-9. PMC: 490022. DOI: 10.1073/pnas.0400417101. View