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Published on: June 21, 2024
Baseline Renal Volumes in Children Born With Cloacal Anomalies
Alexandra Rehfuss1, Tran Bourgeois2, Benjamin Thompson3
1Department of Urology, Nationwide Children's Hospital, Columbus, OH.
Insights
Children with cloacal anomalies do not have smaller baseline renal volumes than controls. This suggests that postnatal factors, not congenital differences, contribute to their high risk of renal insufficiency.
Area of Science:
- Pediatric Urology
- Neonatal Nephrology
- Congenital Anomalies
Background:
- Children with cloacal anomalies face a high risk of renal insufficiency.
- The underlying cause for this increased risk is not fully understood.
- Baseline renal volume may be a contributing factor.
Purpose of the Study:
- To compare baseline renal volume in infants with cloacal anomalies to a control group.
- To investigate if reduced congenital renal volume contributes to renal insufficiency in this population.
Main Methods:
- Retrospective review of a database of children with cloacal anomalies.
- Comparison of renal ultrasound data from cloaca patients and controls (infants with 2-vessel umbilical cord or preauricular tags).
- Exclusion of specific kidney malformations; total and individual kidney volumes analyzed.
Main Results:
- No significant difference in average total renal volume between cloaca patients (22.4 cm³ ) and controls (25.5 cm³ ).
- No significant difference in renal unit volume, whether solitary or not, between cloaca patients and controls after age adjustment.
- P-values for comparisons ranged from .1006 to .4725, indicating no statistical significance.
Conclusions:
- Children with cloacal anomalies exhibit similar baseline renal volumes compared to their peers.
- The elevated risk of renal insufficiency in this group is likely attributed to postnatal renal injury.
- Further research into postnatal factors is warranted to understand and mitigate renal insufficiency.
Objective:
To better understand why children born with cloacal anomalies are at a high risk of renal insufficiency, this study aims to determine baseline renal volume in children with cloacal anomalies compared to controls. We hypothesized children with cloacal anomalies would be born with less renal volume.
Methods:
An IRB approved database of children with cloacal anomalies was reviewed. Controls were female patients with 2-vessel umbilical cord or preauricular tags who underwent screening renal ultrasound. Children were included if they had a renal ultrasound in the first 3 months of life. Cloacal exstrophy, horseshoe and cross-fused ectopic kidneys were excluded. Total and individual kidney volumes were compared between the 2 groups.
Results:
The study cohort consisted of 109 patients, 46 (42.2%) cloaca patients and 63 (57.8%) controls. In unadjusted analyses, average total renal volume for cloaca and control patients was 22.4 cm3 vs 25.5 cm3 respectively (P = .1006), and there was no significant difference when adjusting for age (P = .3915). The estimated difference in renal unit volume between cloaca patients without solitary kidneys and controls was -1.6 cm3 (95%C.I.: -3.6, 0.4; P = .1201), and there was no significant difference when adjusting for age (P = .4725). The age-adjusted difference in renal unit volume between cloaca patients with solitary kidney and controls was 1.8 cm3 (95%CI: -1.1, 4.8; P = .2148).
Conclusions:
Children with cloacal anomalies have similar baseline renal volumes as children without cloacal anomalies. Therefore, the increased risk of renal insufficiency in this patient population appears to be due to renal injury postnatally.
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