Why the study?
What are the physiological and pathophysiological effects of hypoglycemia on the cardiovascular system in patients with diabetes?
What are the physiological and pathophysiological effects of hypoglycemia on the cardiovascular system in patients with diabetes?
Hypoglycemia induces significant adverse hemodynamic and electrophysiological changes in the cardiovascular system, highlighting the potential cardiovascular risks of intensive glycemic control.
May heighten caution with intensive glycemic control in diabetes; leaves open translation to hard CV outcomes.
Intensive glycemic control may increase cardiovascular (CV) risk and mortality due to hypoglycemia. The pathophysiology of glucose counter-regulation in patients with type 1 or type 2 diabetes for over 15 years is characterized by impairment of the defense mechanisms against hypoglycemia. Hypoglycemia causes pronounced physiological and pathophysiological effects on the CV system as consequences of autonomic system activation and counter regulatory hormones release. These effects provoke a series of hemodynamic changes that include an increase in heart rate and peripheral systolic blood pressure, a decrease in central blood pressure, reduced peripheral arterial resistance, and increased myocardial contractility and cardiac output. Cardiac electrophysiological changes including flattening or inversion of T waves, QT prolongation, and ST segment depression were observed in both insulin-induced and spontaneous hypoglycemia. Sympathoadrenal activation is the main cause of these changes through mechanisms that involve, but are not limited to, catecholamine-mediated hypokalemia. Hypoglycemia is also involved in platelet activation. There is growing concern about the long-term effects of hypoglycemia, especially as related to inflammation and atherogenesis.
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Yang et al. (2015) studied this question.
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