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Increased urinary protein excretion in children from families with balkan endemic nephropathy
Vladisav Stefanović1, Marina Mitić-Zlatković, Rade Cukuranović
1Institute of Nephrology and Hemodialysis, Faculty of Medicine, Nis, Serbia. stefan@ni.ac.yu
Insights
Children from families with Balkan endemic nephropathy (BEN) show higher urinary protein excretion, particularly in autumn. This suggests seasonal environmental toxin exposure may play a role in this kidney disease.
Area of Science:
- Nephrology
- Environmental Health
- Pediatrics
Background:
- Balkan endemic nephropathy (BEN) is an environmental disease.
- BEN has not been previously described in children.
- Previous studies indicated urinary tract abnormalities in children from BEN-affected families.
Purpose of the Study:
- To investigate urinary protein excretion in children from BEN-endemic and non-endemic areas.
- To explore potential seasonal variations in urinary protein excretion related to environmental factors.
Main Methods:
- Studied 703 healthy children (aged 9-13) from endemic and non-endemic settlements.
- Collected urine samples three times a year (spring, autumn, winter) over 3 years.
- Measured total urinary protein excretion after a standardized water load.
Main Results:
- Children from BEN families exhibited significantly higher urinary protein excretion compared to controls.
- This difference was most pronounced during the autumn season across all study years.
- Increased protein excretion (≥34 mg/mmol creatinine) was observed more frequently in children from endemic areas during autumn.
Conclusions:
- Children in BEN-endemic regions show elevated urinary protein excretion, especially in autumn.
- Findings support the hypothesis of seasonal environmental toxin exposure contributing to BEN.
- This study highlights potential early indicators of kidney abnormalities in children in endemic areas.
Background:
Balkan endemic nephropathy (BEN) has not been described in children, however some previous studies of children from families with BEN have revealed abnormalities of the urinary tract including an increased urinary protein excretion.
Methods:
In the present study, urinary excretion of total protein was studied in 703 healthy children, aged 9-13, from endemic and non-endemic settlements around the South Morava River. Since BEN is an environmentally induced disease, with possible seasonal variation of toxin(s), children were studied three times a year: in spring, autumn and winter, during a 3-year period. After a water load of 15 ml/kg body weight, a 3-hour urine sample was collected, from 7 to 10 a.m.
Results:
Protein excretion in urine was highest in children from families with BEN compared with the excretion in children from the city, non-endemic villages, and those from non-endemic families living in the same settlements. This was the case during all three periods investigated in the second year of the study. In the autumn term of all three years of the study, protein excretion was significantly higher in children from families with BEN than in children from the city and from non- endemic families living in the same settlements. If the upper limit of protein excretion is set at 34 mg/mmol creatinine, then increased protein excretion in autumn was found in the first year of study in 9/229 children from endemic settlements and in only 4/474 children from non-endemic areas (p = 0.004); in the second year in 5/229 and 3/474 children (p = 0.069), and in the third year in 10/229 and 4/474 children (p = 0.002), respectively.
Conclusions:
We have presented evidence that children from families with BEN and endemic villages consistently excreted significantly more protein in the autumn, and in three seasons (spring, autumn, winter) in 1 year of our study. These results are consistent with seasonal variations in exposure to an environmental toxin(s).
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