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Updated: Apr 9, 2026

Vessel-sparing Excision and Primary Anastomosis
Published on: January 7, 2019
Posterior urethral valves: Metabolic consequences in a cohort of patients
O Sarhan1, Z Nakshabandi2, M Alghanbar2
1Division of Pediatric Urology, Prince Sultan Military Medical City, Riyadh, Saudi Arabia; Urology and Nephrology Center, Mansoura University, Mansoura, Egypt.
Insights
Children with posterior urethral valves (PUVs) often have impaired kidney function, leading to vitamin D deficiency and secondary hyperparathyroidism. Managing kidney health is crucial for addressing these related bone and metabolic issues.
Area of Science:
- Pediatric Nephrology
- Endocrinology
- Urology
Background:
- Posterior urethral valves (PUVs) are a common congenital anomaly in male infants.
- Despite advancements, approximately one-third of children with PUVs develop chronic kidney disease (CKD).
- Abnormal mineral and vitamin D metabolism can negatively impact bone health and overall well-being in these patients.
Purpose of the Study:
- To investigate the relationship between kidney function, vitamin D deficiency, and secondary hyperparathyroidism in children diagnosed with PUVs.
- To identify key predictors of these metabolic derangements in the context of PUV management.
Main Methods:
- A cohort of 64 children with PUVs was followed for an average of 3.64 years post-treatment.
- Laboratory parameters including serum calcium, phosphorus, intact parathyroid hormone (iPTH), and 25-hydroxyvitamin D were compared to a control group of 20 healthy children.
- Kidney function was assessed using estimated glomerular filtration rate.
Main Results:
- Children with PUVs exhibited significantly lower kidney function and 25-hydroxyvitamin D levels, alongside higher iPTH levels compared to controls.
- A strong correlation was observed between the severity of vitamin D deficiency and hyperparathyroidism with the degree of kidney dysfunction.
- Kidney dysfunction emerged as the sole independent predictor for vitamin D deficiency, while kidney function, serum calcium, and alkaline phosphatase predicted hyperparathyroidism.
Conclusions:
- Abnormal kidney function, vitamin D deficiency, and secondary hyperparathyroidism are common in children with PUVs.
- Impaired kidney function is a primary driver of altered vitamin D and parathyroid hormone levels.
- Management strategies should prioritize addressing CKD and controlling vitamin D deficiency and hyperparathyroidism post-PUV ablation.
Background:
Despite the improvements in diagnosis and management of posterior urethral valves (PUVs), about one third of patients develop chronic kidney disease (CKD). Children with PUVs might have abnormal calcium, phosphorus, vitamin D and parathyroid hormone levels, which could affect their bone growth and overall health.
Objective:
The aim was to determine the relationship between kidney function, vitamin D deficiency and secondary hyperparathyroidism in children with PUVs.
Patients And Methods:
Sixty-four children with PUVs were followed for a period of 3.64 ± 2.50 years after their initial presentation and management. Their laboratory parameters were compared with 20 age-, gender- and race-matched children in a control group, including: serum calcium, phosphorus, intact parathyroid hormone (iPTH), 25-hydroxyvitamin D levels, and kidney function.
Results:
Children with PUVs had significantly lower estimated kidney function (P = 0.006) and vitamin D levels (P < 0.001) and higher iPTH levels (P = 0.042). There were no significant between-group differences in serum calcium, phosphorus, alkaline phosphatase, sodium, potassium, and bicarbonate levels. There was a strong correlation between the degree of vitamin D deficiency and hyperparathyroidism and the degree of kidney dysfunction (r = 0.52 and -0.52, respectively) in the PUV group. On a multivariate analysis, the kidney dysfunction was the only independent predictor of vitamin D deficiency (ρ = 0.271, P < 0.001), while kidney dysfunction, serum calcium and alkaline phosphatase were independent predictors for hyperparathyroidism (ρ = 0.925, P<0.001, ρ = 0.933, P<0.001 and ρ = 0.913, P < 0.001, respectively).
Discussion:
The prevalence of CKD in children with PUVs ranges from 30 to 60%. Patients with CKD are more likely to have vitamin D deficiency and display more-prominent hyperparathyroidism. Compared with a control group with normal kidney function, the present cohort had lower 25-hydroxyvitamin D and higher iPTH serum levels. Abnormal kidney function was a major predictor for both serum levels. In this cohort, there were no significant differences in serum calcium and phosphorus between children with PUVs and the control group, and also between those with and without CKD. On the contrary, vitamin D level decreased early in the disease and progressively declined thereafter, while iPTH was the opposite. These findings were comparable to previous studies. This study had some limitations because it was a single center cross-sectional non-randomized study. However, the findings in this study can be extrapolated to children with PUVs and CKD from other origins because the unit is considered as a referral center in the Middle East region.
Conclusion:
Abnormal kidney function, vitamin D deficiency, and secondary hyperparathyroidism are prevalent in children with PUVs. Kidney function is the main determinant of vitamin D and parathyroid hormone levels. Efforts should be directed toward managing CKD, and controlling vitamin D deficiency and hyperparathyroidism in children after ablation of PUV.
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