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Published on: June 7, 2013
Hypertension-mediated organ damage in masked hypertension
Alan L Hinderliter1, Feng-Chang Lin2,3, Laura A Viera3
1Department of Medicine.
Insights
Masked hypertension, where blood pressure is normal in clinic but high at home, shows early organ damage. Home blood pressure monitoring (HBPM) appears better than ambulatory blood pressure monitoring (ABPM) for detecting this damage, particularly left ventricular remodeling.
Area of Science:
- Cardiology
- Hypertension Research
- Diagnostic Imaging
Background:
- Masked hypertension is a blood pressure phenotype with normal clinic readings but elevated out-of-office pressures.
- This condition is linked to early hypertension-mediated organ damage.
- Understanding these early changes is crucial for timely intervention.
Purpose of the Study:
- To investigate early target organ damage in masked hypertension.
- To compare the diagnostic utility of home blood pressure monitoring (HBPM) and ambulatory blood pressure monitoring (ABPM) in identifying these changes.
- To assess left ventricular structure and diastolic function, microalbuminuria, and coronary artery calcification.
Main Methods:
- Echocardiography, microalbuminuria, and coronary artery calcification were assessed in 420 patients with high-normal clinic BP.
- Patients were categorized into sustained normotension, masked hypertension, and sustained hypertension groups.
- Blood pressure was measured using HBPM, daytime ABPM, and 24-h ABPM.
Main Results:
- Masked hypertension detected by HBPM showed intermediate left ventricular (LV) mass and impaired LV relaxation compared to normotensive and hypertensive groups.
- Similar trends were observed with ABPM, but HBPM was more reliably associated with LV remodeling.
- Trends indicated a higher likelihood of microalbuminuria and coronary calcification in masked hypertension versus normotension.
Conclusions:
- Early hypertension-mediated organ damage is evident in masked hypertension.
- HBPM may be superior to ABPM in identifying masked hypertension patients with early LV remodeling and diastolic dysfunction.
- These findings underscore the importance of out-of-office BP monitoring for detecting subclinical organ damage.
Objectives:
Masked hypertension - a blood pressure (BP) phenotype characterized by a clinic BP in the normal range but elevated BP outside the office - is associated with early hypertension-mediated organ damage. This study examined early target organ manifestations of masked hypertension diagnosed by home (HBPM) and ambulatory (ABPM) BP monitoring.
Methods:
Left ventricular (LV) structure and diastolic function measured by echocardiography, microalbuminuria, and coronary artery calcification were evaluated in 420 patients with high clinic BP (SBP 120-150 mmHg or DBP 80-95 mmHg). Evidence of hypertension-mediated organ damage was compared in patients with sustained normotension, masked hypertension, and sustained hypertension based on measurements by HBPM, daytime ABPM, and 24-h ABPM.
Results:
The 420 participants averaged 48 (12) [mean (SD)] years of age; the average clinic BP was 130 (13)/81 (8) mmHg. In individuals with masked hypertension diagnosed by HBPM, indexed LV mass, relative wall thickness, and e' and E/e' (indices of LV relaxation), were generally intermediate between values observed in normotensives and sustained hypertensive patients, and were significantly greater in masked hypertension than normotensives. Similar trends were observed when masked hypertension was diagnosed by ABPM but a diagnosis of masked hypertension was not as reliably associated with LV remodeling or impaired LV relaxation in comparison to normotensives. There were trends towards greater likelihoods of detectable urinary microalbumin and coronary calcification in masked hypertension than in normotensives.
Conclusion:
These results support previous studies demonstrating early hypertension-mediated organ damage in patients with masked hypertension, and suggest that HBPM may be superior to ABPM in identifying patients with masked hypertension who have early LV remodeling and diastolic LV dysfunction.
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