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Distinguishing characteristics of pediatric patients with primary hyperoxaluria type 1 in PEDSnet
Gregory E Tasian1, Kimberley Dickinson2, Grace Park2
1Department of Surgery, Division of Urology, The Children's Hospital of Philadelphia, Philadelphia, PA, USA; Department of Biostatistics, Epidemiology, and Informatics, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, USA.
Insights
Primary hyperoxaluria type 1 (PH1) in children presents with early-onset kidney disease, nephrocalcinosis, and specific stone composition. Identifying these features aids in earlier diagnosis and treatment of this rare metabolic disorder.
Area of Science:
- Pediatric Nephrology
- Inborn Errors of Metabolism
- Urolithiasis Research
Background:
- Primary hyperoxaluria type 1 (PH1) is a rare, autosomal recessive metabolic disorder.
- It leads to oxalate deposition, causing kidney stones, chronic kidney disease, and systemic oxalosis with severe complications.
- Delayed diagnosis is common due to rarity and overlap with other early-onset kidney stone causes.
Purpose of the Study:
- To identify clinical features in individuals under 21 with PH1 that precede diagnosis.
- To differentiate PH1 patients from those with non-PH early-onset kidney stones.
Main Methods:
- A case-control study was conducted between 2009 and 2021 using the PEDSnet network.
- Genetically confirmed PH1 patients were matched with controls having kidney stones without PH.
- Clinical characteristics and diagnostic tests before diagnosis were analyzed.
Main Results:
- The study included 37 PH1 patients and 147 controls.
- PH1 patients were diagnosed younger (median 3 years) and more likely to have nephrocalcinosis (43% vs 3%) and lower eGFR (52 vs 114 mL/min/1.73 m²).
- PH1 patients predominantly had calcium oxalate monohydrate stones (100% vs 10%).
Conclusions:
- Children with PH1 present before adolescence with key indicators.
- Nephrocalcinosis, reduced eGFR at diagnosis, and calcium oxalate monohydrate stones are characteristic.
- These findings may enable earlier diagnosis and treatment of PH1 in pediatric populations.
Background:
Primary hyperoxaluria type 1 (PH1) is an autosomal recessive inborn error of metabolism that causes oxalate deposition, leading to recurrent calcium oxalate kidney stones, chronic kidney disease and systemic oxalosis, which produces a broad range of serious life-threatening complications. Patients with PH1 have delayed diagnosis due to the rarity of the disease and the overlap with early-onset kidney stone disease not due to primary hyperoxaluria.
Objective:
The objective of this study was to determine the clinical features of individuals <21 years of age with PH1 that precede its diagnosis. We hypothesized that a parsimonious set of features could be identified that differentiate patients with PH1 from patients with non-primary hyperoxaluria-associated causes of early-onset kidney stone disease.
Study Design:
We determined the association between clinical characteristics and PH1 diagnosis in a case-control study conducted between 2009 and 2021 in PEDSnet, a clinical research network of eight US pediatric health systems. Each patient with genetically confirmed PH1 was matched by sex and PEDSnet institution to up to 4 control patients with kidney stones without PH of any type. We obtained patient characteristics and diagnostic test results occurring before to less than 6 months after study entrance from a centralized database query and from manual chart review. Differences were examined using standardized differences and multivariable regression.
Results:
The study sample included 37 patients with PH1 and 147 controls. Patients with PH1 were younger at diagnosis (median age of 3 vs 13.5 years); 75 % of children with PH1 were less than 8 years-old. Patients with PH1 were more likely to have combinations of nephrocalcinosis on ultrasound or CT (43 % vs 3 %), lower eGFR at diagnosis (median = 52 mL/min/1.73 m2 vs 114 mL/min/1.73 m2), and have normal mobility. Patients with PH1 had higher proportion of calcium oxalate monohydrate kidney stones than controls (median = 100 % vs 10 %). There were no differences in diagnosis of failure to thrive, stone size, or echocardiography results.
Conclusions:
Children with PH1 are characterized by presentation before adolescence, nephrocalcinosis, decreased eGFR at diagnosis, and calcium oxalate monohydrate stone composition. If externally validated, these characteristics could facilitate earlier diagnosis and treatment of children with PH1.
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