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Composition of urinary calculi in infants: a report from an endemic country
Mirza Naqi Zafar1, Salma Ayub2, Hafsa Tanwri2
1Department of Pathology, Sindh Institute of Urology and Transplantation, Karachi, Pakistan. naqizafar@siut.org.
Insights
Pediatric urolithiasis in infants is common in low-resource settings, with ammonium acid urate (AAU) being the primary stone component. Poverty, malnutrition, and diarrheal diseases are key risk factors for infant kidney stones.
Area of Science:
- Pediatric Nephrology
- Urology
- Biochemistry
Background:
- Pediatric urolithiasis is a significant health issue in low-resource countries, disproportionately affecting infants.
- Infants represent a substantial portion (17-40%) of pediatric urolithiasis cases.
Purpose of the Study:
- To investigate the socio-economic factors, medical history, and chemical composition of urinary stones in infants.
- To identify risk factors associated with urolithiasis in infants up to two years of age.
Main Methods:
- Analysis of 1038 urinary stones from 976 infants (up to 2 years old) using Fourier Transform Infrared Spectroscopy (FTIR).
- Collection of data on infant demographics, socio-economic status, nutritional status, and medical history (diarrhea, UTIs).
Main Results:
- Ammonium acid urate (AAU) was the most frequent stone component (74.37%), followed by calcium oxalate (39.5%).
- Poverty (90%), malnutrition (70%), and rural residence (50%) were prevalent among affected infants.
- Younger infants (0-6 months) showed a higher frequency of uric acid and calcium oxalate stones compared to older infants (7-24 months).
Conclusions:
- Ammonium acid urate (AAU) is the predominant component of urinary stones in infants.
- Poverty, malnutrition, diarrheal diseases, and dehydration are significant risk factors for infant urolithiasis.
- Understanding these factors is crucial for developing targeted prevention and treatment strategies in resource-limited settings.
Abstract:
Pediatric urolithiasis remains endemic in low-resource countries where infants constitute 17-40% of all children with urolithiasis. This study reports socio-economic factors, medical history and chemical composition of urinary stones in 976 infants of up to 2 years of age. Between 1992 and 2016, 976 infants presented to our institute with 1038 stones. Chemical composition of stones was analyzed by Fourier transformation infrared spectroscopy (FTIR). The mean age of infants was 19.5 ± 5.74 months with a M:F ratio of 5.5:1. Half (50%) of the infants were rural dwellers, 90% belonged to low socio-economic class and 70% were malnourished. A history of chronic diarrhoea was reported in 13% and urinary tract infections in 5%. The anatomic location was bladder in 487 (46.9%), kidney in 246 (23.6%), ureter in 142 (13.6%), urethra in 2 (0.2%) and 161 (15.5%) were passed spontaneously. Overall frequency of compounds in stones showed ammonium acid urate (AAU) in 772 (74.37%), calcium oxalate (CaOx) in 410 (39.5%). Uric acid (UA) in 119 (11.46%), calcium phosphate apatite (CaP) in 96 (9.25%), magnesium ammonium phosphate (Struvite) in 45 (4.34%), cystine in 12 (1.16%) and xanthine in 40 (3.85%). Frequency of compounds was similar in genders. Infants of age 0-6 months had higher frequency of UA (28%), CaOx (50%) and low AAU (61%) as compared to 11, 39 and 75%, respectively, in 7-24 months (p < 0.049) (p < 0.002) (p < 0.001). Nucleus of stones showed pure AAU in 63 and 43% on the surface due to addition of CaOx, struvite and CaP. Our study has shown that AAU is a major component of stones in infants where the main risk factors are poverty, malnutrition, diarrheal diseases and dehydration.
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