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Effects of acute hyperglycaemia on cardiac function: an echocardiographic study of monozygotic twins

S S Lo1, F Medici, R Rowe

  • 1Royal Brompton National Heart Hospital, London, UK.

Insights

Acute hyperglycemia in healthy individuals does not replicate the left ventricular diastolic dysfunction seen in type 1 diabetes. This study investigated the impact of hyperglycemia on diastolic function in non-diabetic twins.

Area of Science:

  • Cardiology
  • Endocrinology
  • Diabetology

Background:

  • Congestive heart failure, a major complication of type 1 diabetes, is linked to left ventricular diastolic dysfunction.
  • The precise mechanisms driving this dysfunction remain unclear and are not explained by blood pressure, microvascular issues, or HbA1c levels.
  • Hyperglycemia, a defining characteristic of diabetes, is a potential factor influencing left ventricular diastolic function.

Purpose of the Study:

  • To investigate if acute hyperglycemia can induce left ventricular diastolic function changes in healthy subjects comparable to those observed in patients with insulin-dependent diabetes mellitus (IDDM).

Main Methods:

  • A cross-sectional study was conducted involving sixteen healthy twins from eight discordant IDDM twin pairs.
  • Non-diabetic twins underwent a hyperglycemic clamp to achieve a blood glucose level of 10 mmol/l.
  • Doppler echocardiography assessed left ventricular diastolic function, alongside measurements of blood glucose, insulin, and catecholamines.

Main Results:

  • Diabetic twins exhibited a significantly lower transmitral Doppler E/A velocity ratio at baseline compared to their non-diabetic counterparts.
  • In non-diabetic twins, induced hyperglycemia led to an increased E/A ratio, driven by an increased E velocity and a decreased A velocity.
  • No significant alterations in peak E velocity or isovolumic relaxation time were observed in non-diabetic twins during hyperglycemia.

Conclusions:

  • The study concludes that acute hyperglycemia and the associated rise in plasma catecholamines do not induce left ventricular diastolic alterations that mimic those seen in IDDM patients.
  • This suggests that hyperglycemia alone may not be the primary driver of diastolic dysfunction observed in type 1 diabetes.
Abstract

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