Key result
Impaired glucose regulation (combined IFG/IGT) and type 2 diabetes were significantly associated with prolonged QTc intervals compared to normal glucose regulation, with odds ratios of 1.396 and 1.342, respectively.
Why the study?
QTc interval is associated with type 2 diabetes, but its relationship with different glucose tolerance states among middle-aged and older Chinese individuals remained to be explored.
Does abnormal glucose metabolism increase the QTc interval in middle-aged and older Chinese individuals?
Cross-Sectional (n=7,990)
Yes
Does abnormal glucose metabolism increase the QTc interval in middle-aged and older Chinese individuals?
Odds Ratio: 1.396 (95% CI 1.126–1.73)
p-value: p=<0.001
Impaired glucose tolerance and type 2 diabetes are independently associated with prolonged QTc intervals, suggesting abnormal glucose regulation may increase the risk of ventricular arrhythmias.
Abnormal glucose metabolism was associated with prolonged QTc; hypothesis-generating for arrhythmia risk, requiring prospective validation.
BACKGROUND: Corrected QT (QTc) interval has been reported to be associated with type 2 diabetes. This study aimed to explore the relationship between different glucose tolerance and QTc intervals among middle-aged and older Chinese individuals. METHODS: We conducted a cross-sectional analysis that included 9898 subjects (3194 men and 6704 women) in a Chinese population. Glucose tolerance was studied during the oral glucose tolerance test (OGTT). Insulin, blood pressure, hemoglobin A1c (HbA1c), serum lipids, hepatic transaminases and waist-to-hip ratio were assessed. The QTc interval was derived from ECG recordings, and the subjects were stratified based on different glucose tolerance. RESULTS: QTc interval levels were increased significantly in the subjects with abnormal glucose metabolism compared with the normal glucose regulation group. Multiple regression analyses showed that the QTc interval was significantly associated with fasting plasma glucose, 2-h OGTT plasma glucose and HbA1c. The odds ratio of prolonged QTc was 1.396 for impaired glucose regulation (IFG)/impaired fasting glucose (IGT) (95% CI 0.126-1.730), and 1.342 for type 2 diabetes (95% CI 0.142-1.577) after all potential confounders were adjusted. CONCLUSIONS: Impaired glucose tolerance (IGR) and diabetes are associated with prolonged QTc intervals among middle-aged and older Chinese individuals. Abnormal glucose regulation can be used to monitor the QTc interval in the population.
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Lin et al. (2023) conducted a cross-sectional in Abnormal glucose metabolism (n=7,990). Impaired glucose regulation and type 2 diabetes vs. Normal glucose regulation was evaluated on Prolonged QTc interval (> 440 ms) (OR 1.396, 95% CI 1.126-1.730, p=<0.001). Impaired glucose regulation (combined IFG/IGT) and type 2 diabetes were significantly associated with prolonged QTc intervals compared to normal glucose regulation, with odds ratios of 1.396 and 1.342, respectively.
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