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Severe parental phenotype associates with hypertension in children with ADPKD
Nathalie Demoulin1,2, Elliott Van Regemorter3,4, Karin Dahan5
1Division of Nephrology, Cliniques Universitaires Saint-Luc, Brussels, Belgium. nathalie.demoulin@saintluc.uclouvain.be.
Insights
Children with autosomal polycystic kidney disease (ADPKD) and severe parental ADPKD phenotypes are at higher risk for hypertension. This finding aids in identifying children who would benefit most from early screening and regular blood pressure monitoring.
Area of Science:
- Pediatric Nephrology
- Genetics
- Hypertension Research
Background:
- Autosomal polycystic kidney disease (ADPKD) screening in children is debated.
- Early hypertension detection in pediatric ADPKD is potentially beneficial.
- Identifying at-risk children for ADPKD screening is crucial.
Purpose of the Study:
- Investigate hypertension determinants in children with ADPKD.
- Identify a subgroup of children benefiting from ADPKD screening.
- Correlate genotype, clinical factors, and parental phenotype with hypertension.
Main Methods:
- Retrospective study of 55 children (5-18 years) with ADPKD (2006-2020).
- Assessed associations between genotype, clinical data, parental phenotype, and hypertension.
- Hypertension defined by 24-h ambulatory monitoring or antihypertensive therapy.
Main Results:
- 16% of children with ADPKD had hypertension.
- Hypertension linked to severe parental ADPKD phenotype (30% vs 4%, p=0.03).
- Hypertension also associated with height-adjusted bilateral nephromegaly (67% vs 7%, p<0.001).
Conclusions:
- Severe parental ADPKD phenotype predicts higher hypertension prevalence in children.
- Children of parents with severe ADPKD phenotypes may benefit most from screening.
- Yearly blood pressure monitoring is recommended for these children.
Background:
Early detection of hypertension in children with autosomal polycystic kidney disease (ADPKD) may be beneficial, but screening children at risk of ADPKD remains controversial. We investigated determinants of hypertension in children with ADPKD to help identify a subgroup of children at risk of ADPKD for whom screening for the disease and/or its complications would be more relevant.
Methods:
In a retrospective study including consecutive children with ADPKD aged 5-18 years and followed at Saint-Luc Hospital Brussels between 2006 and 2020, we investigated the potential association between genotype, clinical characteristics and parental phenotype, and presence of hypertension. Hypertension was defined as blood pressure > P95 during 24-h ambulatory monitoring or anti-hypertensive therapy use. Parental phenotype was considered severe based on age at kidney failure, Mayo Clinic Imaging Classification and rate of eGFR decline.
Results:
The study enrolled 55 children with ADPKD (mean age 9.9 ± 2.2 years, 45% male), including 44 with a PKD1 mutation and 5 with no mutation identified. Nine (16%) children had hypertension. Hypertension in children was associated with parental phenotype severity (8/27 (30%) children with severe parental phenotype vs. 1/23 (4%) children with non-severe parental phenotype (p = 0.03)) and height-adjusted bilateral nephromegaly (6/9 (67%) children with bilateral nephromegaly vs. 3/44 (7%) children without bilateral nephromegaly (p < 0.001)).
Conclusions:
Severe parental phenotype is associated with higher prevalence of hypertension in children with ADPKD. Hence, children of parents with severe ADPKD phenotype may be those who will most benefit from screening of the disease and/or yearly BP measures. A higher resolution version of the Graphical abstract is available as Supplementary information.
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