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Fainting Fanconi syndrome clarified by proxy: a case report
Stephen Benedict Walsh1, Robert Unwin1, Robert Kleta2,1
1UCL Centre for Nephrology, Renal Unit, Great Ormond Street Hospital for Children NHS Foundation Trust, Great Ormond Street, London, WC1N 3JH, UK.
Background:
Rare diseases may elude diagnosis due to unfamiliarity of the treating physicians with the specific disorder. Yet, advances in genetics have tremendously enhanced our ability to establish specific and sometimes surprising diagnoses.
Case Presentation:
We report a case of renal Fanconi syndrome associated with intermittent hypoglycemic episodes, the specific cause for which remained elusive for over 30 years, despite numerous investigations, including three kidney and one liver biopsy. The most recent kidney biopsy showed dysmorphic mitochondria, suggesting a mitochondrial disorder. When her son presented with hypoglycemia in the neonatal period, he underwent routine genetic testing for hyperinsulinemic hypoglycemia, which revealed a specific mutation in HNF4A. Subsequent testing of the mother confirmed the diagnosis also in her.
Conclusion:
Modern sequencing technologies that test multiple genes simultaneously enable specific diagnoses, even if the underlying disorder was not clinically suspected. The finding of mitochondrial dysmorphology provides a potential clue for the mechanism, by which the identified mutation causes renal Fanconi syndrome.
Insights
A rare genetic mutation in HNF4A caused a woman's decades-long undiagnosed renal Fanconi syndrome and hypoglycemia. Genetic testing identified the cause, highlighting advances in diagnosing rare diseases.
Area of Science:
- Genetics
- Rare Diseases
- Metabolic Disorders
Background:
- Rare diseases often present diagnostic challenges due to physician unfamiliarity.
- Genetic advancements significantly improve the ability to diagnose complex and rare conditions.
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