Elevated BMI, LDL cholesterol, and blood glucose independently increased odds of acute myocardial infarction by 28%, 14%, and 16% respectively per unit increase in very young adults (≤35 years).
Case-Control (n=122)
No
Are metabolic risk factors (BMI, LDL cholesterol, and blood glucose) associated with premature acute myocardial infarction in adults ≤35 years?
Very young adults (≤35 years) with AMI exhibit markedly elevated BMI, LDL cholesterol, and glucose levels compared to controls, highlighting the importance of early metabolic screening and prevention.
Effect estimate: Adjusted OR 1.28 per 1 kg/m² increase in BMI; adjusted OR 1.14 per 10 mg/dL increase in LDL cholesterol; adjusted OR 1.16 per 10 mg/dL increase in blood glucose (95% CI BMI: 1.08–1.52; LDL cholesterol: 1.01–1.29; blood glucose: 1.05–1.29)
p-value: p=BMI 0.004; LDL cholesterol 0.036; blood glucose 0.005
Acute myocardial infarction (AMI) in very young adults (≤ 35 years) represents a distinct clinical entity with limited evidence. This study aimed to characterize metabolic risk factors differentiating young AMI patients from clinic-based controls. This single-center retrospective case–control study included 62 consecutive young adults (aged 18–35 years) with confirmed AMI and 60 clinic-based controls selected from cardiology outpatient clinics during the same study period. Controls were selected using age (± 2 years) and sex restrictions to ensure group-level comparability with the AMI cohort. Metabolic parameters, including body mass index (BMI), LDL cholesterol, and blood glucose, were compared between groups. Effect sizes (Cohen’s d) were calculated to assess clinical significance. Multivariable logistic regression was performed to identify independent predictors of AMI. Correlation analyses (Pearson or Spearman, as appropriate) were performed to examine relationships between metabolic markers. Young AMI patients demonstrated a significantly more unfavorable metabolic profile than controls: median BMI (26.5 vs. 23.9 kg/m², p 1.0), indicating clinically substantial differences. In multivariable analysis, BMI (adjusted OR 1.28 per kg/m², 95% CI 1.08–1.52), LDL cholesterol (adjusted OR 1.14 per 10 mg/dL, 95% CI 1.01–1.29), and blood glucose (adjusted OR 1.16 per 10 mg/dL, 95% CI 1.05–1.29) remained independently associated with AMI risk. LDL cholesterol showed a statistically significant, albeit weak, positive association with peak troponin levels (ρ = 0.296, p = 0.020). Among AMI cases, STEMI patients exhibited higher acute glucose levels than NSTEMI patients (p = 0.004). Very young adults (≤ 35 years) with AMI exhibit markedly elevated BMI, LDL cholesterol, and glucose levels compared to age- and sex-comparable controls with large effect sizes supporting clinical significance. Multivariable analysis confirmed independent associations for all three metabolic parameters. These traditional modifiable risk factors continue to be strongly associated with early myocardial infarction, emphasizing the importance of aggressive metabolic screening and early prevention strategies in very young populations.
Vural et al. (Tue,) conducted a case-control in Very young adults (≤35 years) with acute myocardial infarction compared to age- and sex-matched controls from cardiology outpatient clinics (n=122). Metabolic risk factors assessment (BMI, LDL cholesterol, blood glucose) vs. Age- and sex-matched clinic-based controls without AMI was evaluated on Occurrence of acute myocardial infarction (AMI) in very young adults (Adjusted OR 1.28 per 1 kg/m² increase in BMI; adjusted OR 1.14 per 10 mg/dL increase in LDL cholesterol; adjusted OR 1.16 per 10 mg/dL increase in blood glucose, 95% CI BMI: 1.08–1.52; LDL cholesterol: 1.01–1.29; blood glucose: 1.05–1.29, p=BMI 0.004; LDL cholesterol 0.036; blood glucose 0.005). Elevated BMI, LDL cholesterol, and blood glucose independently increased odds of acute myocardial infarction by 28%, 14%, and 16% respectively per unit increase in very young adults (≤35 years).