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March 1, 2007Canadian Journal of Physiology and Pharmacology35 citations

Mitochondrial membrane fluidity, potential, and calcium transients in the myocardium from acute diabetic ratsThis paper is one of a selection of papers published in this Special Issue, entitled The Cellular and Molecular Basis of Cardiovascular Dysfunction, Dhalla 70th Birthday Tribute.

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IWIveta Waczulı́kováComenius University BratislavaDHDana HabodaszovaComenius University BratislavaMCMichal CagalinecInstitute of Experimental Endocrinology of the Slovak Academy of Sciences

Structured PICO

P
Population
Rats in an early phase of streptozotocin diabetes, not yet accompanied with diabetes-induced complications
I
Intervention
Streptozotocin-induced diabetes model
C
Comparator
Control rats
O
Outcome
Mitochondrial membrane potential, dynamics, respiratory chain activities, and calcium transientssurrogate

Early-phase diabetes in a rat model induces changes in cardiac mitochondrial membrane fluidity, potential, and calcium transients, providing insight into acute diabetes-induced cardiac alterations.

Abstract

In this study, we report for the first time concurrent measurements of membrane potential and dynamics and respiratory chain activities in rat heart mitochondria, as well as calcium transients in the hearts of rats in an early phase of streptozotocin diabetes, not yet accompanied with diabetes-induced complications. Quantitative relationships among these variables were assessed. The mitochondria from diabetic rats exhibited decreased fluorescence anisotropy values of diphenylhexatriene. This indicates that hydrophobic core of the membranes was more fluid compared with controls (p<0.05). We discuss the changes in fluidity as having been associated with augmented energy transduction through the diabetic membranes. Reduced ratio of JC-1 fluorescence (aggregates to monomers) in the mitochondria from diabetic hearts reflected descendent transmembrane potential. A significant negative association between membrane fluidity and potential in the diabetic group was found (p<0.05; r=0.67). Further, we observed an increase in calcium transient amplitude (CTA) in the diabetic cardiomyocytes (p=0.048). We conclude that some of the calcium-induced regulatory events that dictate fuel selection and capacity for ATP production in diabetic heart occur at the membrane level. Our findings offer new insight into acute diabetes-induced changes in cardiac mitochondria.

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Cite This Study

Waczulı́ková et al. (2007) studied this question.

synapsesocial.com/papers/6a1e18a566b24d664b608caehttps://doi.org/10.1139/y07-035
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mitochondrial dysfunction accompanies diastolic dysfunction in diabetic rat heart1996 · 169 citations
  2. 2Mitochondrial dysfunction observed in situ in cardiomyocytes of rats in experimental diabetes1992 · 89 citations
  3. 3Mitochondrial inefficiencies and anoxic ATP hydrolysis capacities in diabetic rat heart2014 · 90 citations
  4. 4Calcium signaling-mediated endogenous protection of cell energetics in the acutely diabetic myocardiumThis article is one of a selection of papers published in a special issue on Advances in Cardiovascular Research.2009 · 17 citations
  5. 5Energy Transfer in Acute Diabetic Rat Hearts2002 · 15 citations