Methods in molecular biology · 2011 · 109 citations · 29 references
The mitochondrial electrical membrane potential (Δψ) is the main component of the proton motive force (Δp) generated across the inner mitochondrial membrane during electron flow through the respiratory chain. Among the techniques available to assess Δψ, methods that rely on the spectrophotofluorometric responses of dyes are widely employed for whole suspensions of isolated mitochondria or permeabilized cells. Safranine is one of the dyes currently used most often for this purpose. Safranine is a lipophilic cationic dye that undergoes optical shifts upon its potential-dependent distribution between the external medium and the intramitochondrial compartment and on its stacking to inner mitochondrial membrane anionic sites. The association between the optical changes of safranine and the membrane potential allows unknown Δψ values to be estimated from an equation describing their relationship. Here, we describe the use of safranine as a fluorescent indicator of Δψ in isolated mitochondria and digitonin-permeabilized cells. We present suitable conditions to employ safranine as a Δψ indicator.
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Naoki Kamo, Makoto Muratsugu, Ruji Hongoh et al. · The Journal of Membrane Biology · 1979 · 954 citations
Membrane Potential, Steady State, Mitochondrial Function +11
R. K. Emaus, Ron Grunwald, John J. Lemasters · Biochimica et Biophysica Acta (BBA) - Bioenergetics · 1986 · 792 citations
Transmembrane Potential, Mitochondrial Function, Biochemistry +10
David G. Nicholls · European Journal of Biochemistry · 1974 · 715 citations · Full text
Bioelectrochemistry, Ion Distribution, Mitochondrial Biology +21