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The intestinal microbiome of children with initial and recurrent nephrolithiasis: A pilot study and exploratory
Jonathan S Ellison1, Samantha N Atkinson2, Mike Hayward2
1Division of Pediatric Urology & Department of Urology, Children's Wisconsin & Medical College of Wisconsin, Milwaukee WI, USA.
Insights
Pediatric kidney stone disease is rising, with distinct biological mechanisms in children. This pilot study found lower microbial diversity and oxalate gene expression in recurrent pediatric kidney stone patients, suggesting potential diagnostic markers.
Area of Science:
- Pediatric Nephrology
- Microbiome Research
- Urology
Background:
- Kidney stone disease (nephrolithiasis) incidence is increasing in children.
- Distinct biological mechanisms differentiate pediatric from adult kidney stone disease.
- Factors influencing recurrent pediatric kidney stones and their microbiome associations are poorly understood.
Purpose of the Study:
- To compare microbiome signals in children with initial versus recurrent nephrolithiasis.
- To explore associations between microbiome composition, diversity, and urinary parameters in pediatric kidney stone formers.
- To investigate potential diagnostic markers for recurrent kidney stone events in children.
Main Methods:
- Pilot cohort study of 16 children (aged 6-18) with a history of nephrolithiasis.
- Analysis of fecal samples using 16S ribosomal DNA sequencing for microbiome diversity.
- Shotgun sequencing to assess oxidase degradation and butyrate production genes, correlated with stone recurrence and urinary parameters.
Main Results:
- Recurrent pediatric kidney stone formers showed trends toward lower microbial diversity (Faith and Shannon indices).
- A trend towards higher mean abundance of Formyl-CoA transferase was observed in initial stone formers compared to recurrent ones.
- Eubacterium siraeum was significantly more abundant in children with hypercalciuria (p=0.001).
Conclusions:
- Pilot findings suggest lower microbial diversity and altered oxalate gene expression in recurrent pediatric kidney stone patients.
- These microbiome alterations may serve as potential diagnostic markers for future kidney stone events.
- Further research is warranted to validate these findings in larger cohorts.
Introduction:
Kidney stone disease in children is rising disproportionate to the general population, representing a disease population with a distinct biological mechanism as compared to adults. Factors influencing recurrent kidney stone disease in children are poorly characterized and the associations of the intestinal microbiome within sub-populations of kidney stone formers, however, are not well described. We evaluated a pilot cohort of children with nephrolithiasis comparing patients based on recurrent kidney stone episodes and abnormal 24-h urinary parameters, with dual aims to compare the microbiome signal in children with initial and recurrent nephrolithiasis and to explore additional associations in microbiome composition and diversity within this population.
Methods:
Children aged 6-18 with a history of nephrolithiasis, without an active ureteral calculus or antibiotic exposure within 30 days of study entry were eligible to participate. All participants had a 24-h urine study within 6 months of study entry and provided a fecal sample. Microbiome samples were analyzed using 16S ribosomal DNA sequencing techniques for alpha and beta diversity comparing initial and recurrent stone formers as well as microbiome multivariate association (MaAsLin2) to determine differentially abundant taxa. Shotgun sequencing reads were aligned to custom oxidase degradation and butyrate production gene databases (5 databases total). Comparisons for MaAsLin2 and shotgun metagenomics, normalized to sequencing depth, were based on stone recurrence, sex, hypercalcuria (≤4 mg/kg/day), hyperoxaluria (≥45 mg/1.73 m2), and hypocitraturia (<310 mg/1.73 m2 [females] or < 365 mg/1.73 m2 [males]).
Results:
A total of 16 enrolled children provided samples sufficient for analyses, including 9 girls and 7 boys, of whom 5 had experienced recurrent kidney stone events. Three participants had hypercalcuria, 2 had hyperoxaluria, and 4 had hypocitraturia. Comparisons of Formyl-CoA transferase between index and recurrent urinary stone disease revealed a trend towards higher mean abundance of the gene in initial stone formers (0.166% vs 0.0343%, p = 0.2847) (Summary Figure), while trends toward lower biodiversity were also noted in the recurrent stone cohort on both Faith (p = 0.06) and Shannon (p = 0.05) indices. Exploratory analyses found Eubacterium siraeum to be significantly greater in relative abundance in children with documented hypercalciuria (p = 0.001).
Discussion:
Our pilot study demonstrates possible signals in both microbial diversity and oxalate gene expression, both of which are lower in recurrent pediatric kidney stone patients. These findings warrant further investigation as a potential diagnostic marker for future kidney stone events.
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