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Prevalence of Monogenic Causes in Pediatric Patients with Nephrolithiasis or Nephrocalcinosis
Daniela Anne Braun1, Jennifer Ashley Lawson1, Heon Yung Gee2
1Division of Nephrology, Department of Medicine and.
Insights
Genetic mutations explain over 16% of pediatric kidney stones and nephrocalcinosis. Early-onset cases are linked to recessive genes, while later-onset cases involve dominant genes.
Area of Science:
- Genetics
- Pediatric Nephrology
- Molecular Biology
Background:
- Nephrolithiasis affects 10-15% of adults, causing significant morbidity and potential progression to chronic kidney disease (CKD).
- Recent discoveries have identified multiple monogenic causes for nephrolithiasis and nephrocalcinosis.
- The prevalence of specific monogenic genes in pediatric renal stone populations remains understudied.
Purpose of the Study:
- To determine the molecular basis of nephrolithiasis and nephrocalcinosis in a pediatric cohort.
- To identify the percentage of cases attributable to mutations in known nephrolithiasis/nephrocalcinosis genes.
Main Methods:
- High-throughput exon sequencing was performed on an international cohort of 143 pediatric individuals (<18 years) with nephrolithiasis or isolated nephrocalcinosis.
- Analysis included 30 known nephrolithiasis/nephrocalcinosis genes.
- Participants were recruited from three international renal stone clinics over seven months.
Main Results:
- Likely causative mutations were identified in 14 of the 30 genes analyzed, yielding a molecular diagnosis in 16.8% (24/143) of individuals.
- Over 44% (12/27) of detected mutations were novel disease-causing variants.
- Infantile-onset cases were associated with recessive monogenic genes, whereas later-onset cases showed a higher frequency of dominant gene mutations.
Conclusions:
- This study presents the first pediatric cohort exclusively examined for monogenic causes of nephrolithiasis/nephrocalcinosis.
- Mutational analysis in pediatric patients with early-onset kidney stones or nephrocalcinosis may lead to crucial therapeutic and preventative strategies.
Background And Objectives:
Nephrolithiasis is a prevalent condition that affects 10%-15% of adults in their lifetime. It is associated with high morbidity due to colicky pain, the necessity for surgical intervention, and sometimes progression to CKD. In recent years, multiple monogenic causes of nephrolithiasis and nephrocalcinosis have been identified. However, the prevalence of each monogenic gene in a pediatric renal stone cohort has not yet been extensively studied.
Design, Setting, Participants, & Measurements:
To determine the percentage of cases that can be explained molecularly by mutations in one of 30 known nephrolithiasis/nephrocalcinosis genes, we conducted a high-throughput exon sequencing analysis in an international cohort of 143 individuals <18 years of age, with nephrolithiasis (n=123) or isolated nephrocalcinosis (n=20). Over 7 months, all eligible individuals at three renal stone clinics in the United States and Europe were approached for study participation.
Results:
We detected likely causative mutations in 14 of 30 analyzed genes, leading to a molecular diagnosis in 16.8% (24 of 143) of affected individuals; 12 of the 27 detected mutations were not previously described as disease causing (44.4%). We observed that in our cohort all individuals with infantile manifestation of nephrolithiasis or nephrocalcinosis had causative mutations in recessive rather than dominant monogenic genes. In individuals who manifested later in life, causative mutations in dominant genes were more frequent.
Conclusions:
We present the first exclusively pediatric cohort examined for monogenic causes of nephrolithiasis/nephrocalcinosis, and suggest that important therapeutic and preventative measures may result from mutational analysis in individuals with early manifestation of nephrolithiasis or nephrocalcinosis.
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