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Childhood kidney outcomes in relation to fetal blood flow and kidney size
Marjolein N Kooijman1, Hanneke Bakker1, Albert J van der Heijden2
1The Generation R Study Group, Departments of Epidemiology, Pediatrics, and.
Insights
Reduced fetal blood flow to abdominal organs is linked to smaller kidneys and lower kidney function in children. This study highlights the long-term impact of impaired fetal development on kidney health.
Area of Science:
- Perinatal Medicine
- Pediatric Nephrology
- Developmental Biology
Background:
- Impaired fetal abdominal blood flow is hypothesized to impact kidney development and long-term function.
- Fetal growth restriction and altered blood flow patterns can have lasting health consequences.
Purpose of the Study:
- To investigate the association between fetal blood flow distribution and childhood kidney outcomes.
- To determine if preferential fetal blood flow to the upper body affects kidney size and function in school-aged children.
Main Methods:
- Prospective cohort study of 923 pregnant women and their children.
- Fetal umbilical/cerebral artery pulsatility index ratio used to assess blood flow distribution.
- Childhood kidney volumes, blood markers (creatinine, cystatin C), microalbuminuria, blood pressure, and eGFR measured.
Main Results:
- Preferential fetal blood flow to the upper body was associated with smaller childhood kidney volumes.
- Fetal kidney volume positively correlated with childhood kidney volume and eGFR, and inversely with creatinine and cystatin C.
- Children with highest fetal blood flow redistribution and lowest fetal kidney volume had significantly lower eGFR.
Conclusions:
- Impaired fetal abdominal blood flow and smaller fetal kidney size are linked to subclinical kidney changes in school-aged children.
- Fetal kidney development and blood flow patterns are critical determinants of long-term renal health.
Abstract:
Impaired fetal abdominal blood flow may lead to smaller kidneys and subsequent impaired kidney function in later life. In a prospective cohort study among 923 pregnant women and their children, we measured fetal growth, kidney volumes, and umbilical and cerebral artery blood flow (median gestational age of 30.3 weeks; 95% range, 28.5-32.7 weeks). We used a higher umbilical/cerebral artery pulsatility index ratio as an indicator of preferential fetal blood flow to the upper body parts at the expense of the intra-abdominal organs. At a median age of 5.9 years (95% range, 5.7-6.6 years), we measured childhood kidney volumes, creatinine and cystatin C blood levels, microalbuminuria, BP, and eGFR. A preferential fetal blood flow to the upper body parts at the expense of the intra-abdominal organs associated only with a smaller combined kidney volume in childhood. Fetal combined kidney volume positively associated with childhood combined kidney volume and eGFR, and inversely associated with childhood creatinine and cystatin C levels (all P values <0.05), but did not associate with childhood microalbuminuria and BP. Children within the highest tertile of fetal umbilical/cerebral ratio and the lowest tertile of fetal combined kidney volume had the lowest eGFR (difference, -6.36 ml/min per 1.73 m(2); 95% confidence interval, -11.78 to -0.94 compared with children within the middle tertiles). These data suggest that impaired fetal blood to the abdominal organs and smaller fetal kidney size are associated with subclinical changes in kidney outcomes in school-aged children.
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