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Circadian Blood Pressure Profile in Pediatric Patients with Primary Hypertension
Michał Szyszka1, Piotr Skrzypczyk2, Anna Ofiara2
1Department of Pediatrics and Nephrology, Doctoral School, Medical University of Warsaw, 02-091 Warsaw, Poland.
Insights
Disturbed circadian blood pressure patterns are common in children with primary hypertension and linked to higher body weight. Non-dipping correlates with increased left ventricular mass, while extreme dipping may indicate greater arterial stiffness.
Area of Science:
- Pediatric Cardiology
- Hypertension Research
- Circadian Biology
Background:
- Circadian blood pressure (BP) profiles are crucial in managing hypertension.
- Hypertension-mediated organ damage (HMOD) assessment is vital in pediatric primary hypertension (PH).
- Understanding BP variability in children with PH is essential for early intervention.
Purpose of the Study:
- To investigate factors influencing circadian BP profiles in pediatric PH.
- To determine the association between circadian BP patterns and HMOD.
- To identify risks associated with abnormal BP dipping in children.
Main Methods:
- 112 children with untreated primary hypertension were studied.
- Circadian BP was monitored, defining non-dipping (<10% nocturnal drop) and extreme dipping (>20% drop).
- Associations between BP dipping patterns, BMI Z-score, left ventricular mass index (LVMI), and augmentation index (AIx75HR) were analyzed.
Main Results:
- Non-dipping (44.6%) and extreme dipping (25.9%) were prevalent in pediatric PH.
- Nocturnal SBP decrease correlated negatively with BMI Z-score and LVMI.
- Disturbed BP profiles were linked to higher LVMI; extreme dippers showed higher AIx75HR, indicating increased arterial stiffness.
Conclusions:
- Disturbed circadian BP profiles are common in pediatric PH and not indicative of secondary hypertension.
- Abnormal BP dipping is associated with higher body weight and organ damage.
- Non-dipping in pediatric PH signifies increased left ventricular mass, while extreme dipping suggests heightened arterial stiffness.
Abstract:
Our study aimed to evaluate factors affecting circadian BP profile and its association with hypertension-mediated organ damage (HMOD) in pediatric patients with primary hypertension (PH). The study included 112 children (14.7 ± 2.1 age, 79 boys, 33 girls) with untreated PH. Non-dipping was defined as a nocturnal drop in systolic or diastolic BP (SBP, DBP) < 10%, and a nocturnal drop >20% was defined as extreme dipping. The nocturnal SBP drop was 10.9 ± 5.9 (%), and the DBP drop was 16.2 ± 8.5 (%). Non-dipping was found in 50 (44.6%) children and extreme dipping in 29 (25.9%) patients. The nocturnal SBP decrease correlated with BMI Z-score (r = −0.242, p = 0.010) and left ventricular mass index (LVMI) (r = −0.395, p = 0.006); diastolic DBP decrease correlated with augmentation index (AIx75HR) (r = 0.367, p = 0.003). Patients with a disturbed blood pressure profile had the highest LVMI (p = 0.049), while extreme dippers had the highest augmentation index (AIx75HR) (p = 0.027). Elevated systolic and diastolic BP dipping were risk factors for positive AIx75HR (OR 1.122 95CI (1.009−1.249) and OR 1.095 95CI (1.017−1.177). We concluded that disturbed circadian BP profile was common in children with PH and should not be considered a marker of secondary hypertension. A disturbed circadian BP profile may be associated with higher body weight. In pediatric patients with PH, non-dipping is associated with increased left ventricular mass, and extreme dipping may be a risk factor for increased arterial stiffness.
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