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March 8, 2006The Journal of Clinical Endocrinology & Metabolism55 citationsOpen Access

High Glucose Alters Cardiomyocyte Contacts and Inhibits Myofibrillar Formation

DDDaniela DyntarПСП. В. СергеевJKJelena Klisic

Key Result

Streptozotocin-induced diabetes led to a 3.3-fold increase in cardiac cell apoptosis (0.0069% vs 0.0021%, P<0.001) and reduced cardiomyocyte contacts, while high glucose in vitro inhibited myofibrillar formation.

Structured PICO

P
Population
10 female rats (5 streptozotocin-induced diabetic, 5 controls) and cultured adult rat cardiomyocytes were used to study the structural alterations of the heart in a diabetic milieu.
I
Intervention
High glucose exposure and streptozotocin-induced diabetes
C
Comparator
Normal glucose / non-diabetic conditions (implied)
O
Outcome
Cardiac cell apoptosis, cardiomyocyte contacts, and myofibrillar formationsurrogate

A diabetic milieu induces structural alterations in the heart, including apoptosis, loss of intercellular contacts, and malformation of contractile structures, which can be prevented by antioxidants.

Main Result

Effect estimate: 3.3-fold increase

Absolute Event Rate: 0.0069% vs 0.0021%

p-value: p=<0.001

Limitations

  • The animal model develops diabetes very fast and covers only a short period of the disease, unlike human diabetes which develops slowly.
  • TUNEL-positive nuclei may underestimate the true amount of cell death or indicate active DNA processing rather than completed apoptosis.

Abstract

CONTEXT: The frequency of diabetes-related heart failure along with the prevalence of diabetes is increasing. Diabetic cardiomyopathy is considered to be a distinct disease in the absence of discernible coronary artery and other defined heart disease. Previously we have shown that glucose and palmitic acid induce degeneration of myofibrils and modulate apoptosis in cultivated cardiomyocytes. OBJECTIVE: Here we studied the mechanisms of diabetic cardiomyopathy in more detail. RESULTS: Streptozotocin-induced diabetes led to a significant increase in cardiac cell apoptosis. Furthermore, cardiomyocyte contacts were reduced. In vitro, prolonged exposure of cultured adult cardiomyocytes to high glucose concentrations drastically reduced myofibrillar formation. In particular, sarcomeric myosin heavy chains and cardiac alpha-actin were reduced, whereas the nonsarcomeric smooth muscle alpha-actin remained unaffected. The deleterious effects of glucose on myofibril formation were prevented by antioxidative regimens. CONCLUSIONS: Thus, a diabetic milieu leads to multiple structural alterations of the heart including apoptosis, loss of intercellular contacts, and malformation of contractile structures.

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Cite This Study

Dyntar et al. (2006) studied Diabetic cardiomyopathy (n=10). Streptozotocin-induced diabetes and high glucose exposure vs. Buffer injection (in vivo); 5.5 mmol/liter glucose (in vitro) was evaluated on Cardiac cell apoptosis (TUNEL-positive nuclei) (3.3-fold increase, p=<0.001). Streptozotocin-induced diabetes led to a 3.3-fold increase in cardiac cell apoptosis (0.0069% vs 0.0021%, P<0.001) and reduced cardiomyocyte contacts, while high glucose in vitro inhibited myofibrillar formation.

synapsesocial.com/papers/6a6546a88a6cbd62b5032fa3https://doi.org/10.1210/jc.2005-1904
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Also Consider

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

  1. 1Hyperglycemia induces defective Ca<sup>2+</sup> homeostasis in cardiomyocytes2016 · 53 citations
  2. 2Effect of Diabetes on Alteration of Metabolism in Cardiac Myocytes: Therapeutic Implications2011 · 47 citations
  3. 3Cardiomyocytes cultured on mechanically compliant substrates, but not on conventional culture devices, exhibit prominent mitochondrial dysfunction due to reactive oxygen species and insulin resistance under high glucose2018 · 15 citations
  4. 4My Sweetheart Is Broken: Role of Glucose in Diabetic Cardiomyopathy2017 · 56 citations
  5. 5Hyperglycemia-Induced Apoptosis in Mouse Myocardium2002 · 666 citations