Diabetic cardiomyopathy is associated with defective myocellular copper regulation and both defects are rectified by divalent copper chelation

Heart disease is the leading cause of death in diabetic patients, and defective copper metabolism may play important roles in the pathogenesis of diabetic cardiomyopathy (DCM). The present study sought to determine how myocardial copper status and key copper-proteins might become impaired by diabete...

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Veröffentlicht in:Cardiovascular Diabetology 2014-06, Vol.13 (1), p.100-100, Article 100
Hauptverfasser: Zhang, Shaoping, Liu, Hong, Amarsingh, Greeshma V, Cheung, Carlos C H, Hogl, Sebastian, Narayanan, Umayal, Zhang, Lin, McHarg, Selina, Xu, Jingshu, Gong, Deming, Kennedy, John, Barry, Bernard, Choong, Yee Soon, Phillips, Anthony R J, Cooper, Garth J S
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Sprache:eng
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Zusammenfassung:Heart disease is the leading cause of death in diabetic patients, and defective copper metabolism may play important roles in the pathogenesis of diabetic cardiomyopathy (DCM). The present study sought to determine how myocardial copper status and key copper-proteins might become impaired by diabetes, and how they respond to treatment with the Cu (II)-selective chelator triethylenetetramine (TETA) in DCM. Experiments were performed in Wistar rats with streptozotocin (STZ)-induced diabetes with or without TETA treatment. Cardiac function was analyzed in isolated-perfused working hearts, and myocardial total copper content measured by particle-induced x-ray emission spectroscopy (PIXE) coupled with Rutherford backscattering spectrometry (RBS). Quantitative expression (mRNA and protein) and/or activity of key proteins that mediate LV-tissue-copper binding and transport, were analyzed by combined RT-qPCR, western blotting, immunofluorescence microscopy, and enzyme activity assays. Statistical analysis was performed using Student's t-tests or ANOVA and p-values of 
ISSN:1475-2840
1475-2840
DOI:10.1186/1475-2840-13-100