Key result
Hypertensive parental history is linked to early diastolic abnormalities including ~19 ms lower deceleration time.
Why the study?
Whether changes in cardiac structure and function predate the clinical manifestation of hypertension later in life was being investigated.
Do normotensive offspring of hypertensive parents have early diastolic functional abnormalities compared to offspring of normotensive parents?
Cross-Sectional (n=142)
Do normotensive offspring of hypertensive parents have early diastolic functional abnormalities compared to offspring of normotensive parents?
Absolute Event Rate: 149.9% vs 169%
p-value: p=0.012
Normotensive offspring of hypertensive parents exhibit early echocardiographic signs of diastolic dysfunction compared to those with normotensive parents, suggesting cardiac changes may predate clinical hypertension.
Hypothesis-generating for preclinical diastolic changes in offspring of hypertensives; prospective studies needed before screening implications.
BACKGROUND: Some studies have suggested that diastolic dysfunction precedes the clinical manifestation of hypertension. Whether changes in cardiac structure and function predate the clinical manifestation of hypertension later in life is now being investigated. The aim of this study was to assess the differences in cardiac structure and function between the offspring of hypertensive and normotensive parents. METHODS: Eighty normotensive offspring of hypertensive parents (OHyp) (41 females and 39 males) and 62 normotensive offspring of normotensive parents (ONorm) (31 males and 31 females) were recruited for echocardiography. RESULTS: The mean age was 25.0 (5.31) and 24.3 (3.60) years in the OHyp and ONorm participants, respectively (p = 0.369). Other baseline parameters were comparable between the two groups. Septal wall thickness in systole was higher in the OHyp than the ONorm subjects [1.3 (0.35) vs 1.1 (0.25), p = 0.0173]. Indexed left ventricular mass [28.1 (7.33) vs 27.5 (7.23), p = 0.631] and relative wall thickness [(0.3 (0.10) vs 0.3 (0.90), p = 0.280] were similar in the two groups. The offspring of hypertensives had lower deceleration time [149.9 (38.89) vs 169.0 (50.08) ms, p = 0.012], prolonged duration of pulmonary A reverse flow [113.5 (70.69) vs 81.7 (38.31) ms, p = 0.024], increased myocardial isovolumic relaxation time [173.4 (47.98) vs 156.1 (46.74) ms, p = 0.033] and a lower myocardial Em [0.2 (0.05) vs 0.3 (1.38), p = 0.037] and myocardial Em/Am ratio [1.6 (0.01) vs 2.1 (0.01), p = 0.019] than the offspring of normotensives. CONCLUSION: This study showed that offspring of OHyp subjects had early diastolic functional abnormalities when compared with offspring of ONorm participants. Longitudinal studies are needed to determine the implications of this finding in this African population.
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Adeoye et al. (2012) conducted a cross-sectional in Normotensive offspring of hypertensive parents (n=142). Hypertensive parents vs. Normotensive parents was evaluated on Deceleration time (p=0.012). Normotensive offspring of hypertensive parents exhibited early diastolic functional abnormalities, including lower deceleration time (149.9 vs 169.0 ms, p=0.012), compared to offspring of normotensives.
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