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Published on: June 23, 2015
Matching clinical and genetic data in pediatric patients at risk of developing cystic kidney disease
Valeria Bracciamà1, Tiziana Vaisitti2, Fiorenza Mioli1
1Immunogenetics and Transplant Biology, AOU Città della Salute e della Scienza, ERKNet Center & Department of Medical Sciences, University of Turin, Turin, Italy.
Insights
Early genetic diagnosis is crucial for managing pediatric cystic kidney disease. This study identified causative genetic variants in most pediatric patients, enabling timely intervention and family counseling.
Area of Science:
- Pediatric Nephrology
- Medical Genetics
- Diagnostic Imaging
Background:
- Cystic kidney disease encompasses diverse hereditary and non-hereditary conditions causing renal cysts.
- These conditions affect individuals from prenatal stages through adulthood.
- Early diagnosis and monitoring are essential for pediatric patients with cystic kidneys.
Purpose of the Study:
- To conduct genetic analyses in pediatric patients with ultrasound-detected kidney cysts.
- To establish an early molecular diagnosis for improved patient management.
Main Methods:
- A cohort of 70 pediatric patients underwent clinical evaluation and follow-up.
- Clinical exome sequencing and targeted gene panel analysis were performed.
- Sanger sequencing and segregation studies validated genetic variants for counseling.
Main Results:
- Causative genetic variants were identified in 53 out of 70 pediatric patients.
- Prenatal diagnosis of hyper-echogenic/cystic kidneys was observed in 24 patients, irrespective of family history.
Conclusions:
- Cystic kidney disease can manifest early in life, including prenatally.
- Ultrasound screening combined with genetic testing is vital for accurate diagnosis.
- Early diagnosis facilitates better clinical management and tailored genetic counseling.
Background:
Cystic kidney disease is a heterogeneous group of hereditary and non-hereditary pathologic conditions, associated with the development of renal cysts. These conditions may be present both in children and adults. Cysts can even be observed already during the prenatal age, and pediatric patients with cysts need to be clinically monitored. An early clinical and genetic diagnosis is therefore mandatory for optimal patient management. The aim of this study was to perform genetic analyses in patients with echographic evidence of kidney cysts to provide an early molecular diagnosis.
Methods:
A cohort of 70 pediatric patients was enrolled and clinically studied at the time of first recruitment and at follow-up. Genetic testing by clinical exome sequencing was performed and a panel of genes responsible for "cystic kidneys" was analyzed to identify causative variants. Sanger validation and segregation studies were exploited for the final classification of the variants and accurate genetic counseling.
Results:
Data showed that 53/70 of pediatric patients referred with a clinical suspicion of cystic kidney disease presented a causative genetic variant. In a significant proportion of the cohort (24/70), evidence of hyper-echogenic/cystic kidneys was already present in the prenatal period, even in the absence of a positive family history.
Conclusions:
This study suggests that cystic kidney disease may develop since the very early stages of life and that screening programs based on ultrasound scans and genetic testing play a critical role in diagnosis, allowing for better clinical management and tailored genetic counseling to the family.
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