4.3 Article

A comparative assessment of fluo Ca2+ indicators in rat ventricular myocytes

Journal

CELL CALCIUM
Volume 52, Issue 2, Pages 170-181

Publisher

CHURCHILL LIVINGSTONE
DOI: 10.1016/j.ceca.2012.05.010

Keywords

Fluo-2MA; Fluo-3; Fluo-4; Loading method; Rat ventricular myocytes; Cardiac; Calcium dissociation constants; Calcium transients; Fractional shortening; Compartmentalization; Loading rate

Categories

Funding

  1. National Heart, Lung and Blood Institute [P01 HL67849, 1R01HL105239, 1R01HL106059, R01-HL36974]
  2. National Institute of General Medical Sciences [R01-GM056481]
  3. Leducq North American-European Atrial Fibrillation Research Alliance
  4. American Heart Association [0825469E]
  5. European Community [HEALTH-F2-2009-241526]

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The fluo family of indicators is frequently used in studying Ca2+ physiology; however, choosing which fluo indicator to use is not obvious. Indicator properties are typically determined in well-defined aqueous solutions. Inside cells, however, the properties can change markedly. We have characterized each of three fluo variants (fluo-2MA, fluo-3 and fluo-4) in two forms the acetoxymethyl (AM) ester and the K+ salt. We loaded indicators into rat ventricular myocytes and used confocal microscopy to monitor depolarization-induced fluorescence changes and fractional shortening. Myocytes loaded with the indicator AM esters showed significantly different Ca2+ transients and fractional shortening kinetics. Loading the K+ salts via whole-cell patch-pipette eliminated differences between fluo-3 and fluo-4, but not fluo-2MA. Cells loaded with different indicator AM esters showed different staining patterns suggesting differential loading into organelles. Ca2+ dissociation constants (K-d,K-Ca), measured in protein-rich buffers mimicking the cytosol were significantly higher than values determined in simple buffers. This increase in K-d,K-Ca (decrease in Ca2+ affinity) was greatest for fluo-3 and fluo-4, and least for fluo-2MA. We conclude that the structurally-similar fluo variants differ with respect to cellular loading, subcellular compartmentalization, and intracellular Ca2+ affinity. Therefore, judicious choice of fluo indicator and loading procedure is advisable when designing experiments. (C) 2012 Elsevier Ltd. All rights reserved.

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