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Updated: Nov 4, 2025

Use of Ultra-high Field MRI in Small Rodent Models of Polycystic Kidney Disease for In Vivo Phenotyping and Drug Monitoring
Published on: June 23, 2015
Comprehensive strategy improves the genetic diagnosis of different polycystic kidney diseases
Hua-Ying Hu1,2, Jing Zhang3, Wei Qiu4
1Department of Ophthalmology, Xiang'an Hospital of Xiamen University, Fujian Provincial Key Laboratory of Ophthalmology and Visual Science, School of Medicine, Xiamen University, Fujian Engineering and Research Center of Eye Regenerative Medicine, Eye Institute of Xiamen University, Xiamen, China.
Insights
A new genetic testing strategy efficiently identifies polycystic kidney disease (PKD) variations using whole-exome sequencing and PCR. This approach aids in diagnosing PKD in families, including prenatal cases, by detecting biallelic and digenic mutations.
Area of Science:
- Genetics
- Molecular Biology
- Medical Diagnostics
Background:
- Polycystic kidney disease (PKD) encompasses ADPKD, ARPKD, and SPKD, presenting diagnostic challenges, especially without family history.
- Genetic testing selection for cystic kidney diagnoses requires efficient and cost-effective strategies.
- Ciliary gene variations are implicated in various forms of PKD.
Purpose of the Study:
- To develop and validate a practical, cost-effective genetic testing strategy for diagnosing PKD.
- To identify and characterize cystogene variations in families with renal polycystic disorders.
- To improve the detection of pathogenic variations in prenatal PKD cases.
Main Methods:
- A stepwise approach combining whole-exome sequencing (WES), Long-range PCR (LR-PCR), Sanger sequencing, and MLPA.
- Enrollment of twenty-six families with renal polycystic disorders.
- Analysis of variants in four ciliary genes: PKD1, PKHD1, TMEM67, and TMEM107.
Main Results:
- Identified and verified 32 variants in 23 families (88.5%), including 16 novel variants.
- Detected pathogenic variations in five fetuses from six families using prenatal ultrasound and genetic analysis.
- Confirmed biallelic and digenic variations as primary pathogenic patterns in fetal PKD.
Conclusions:
- The WES + LR-PCR workflow is efficient for detecting diverse PKD variations.
- The developed strategy aids in diagnosing PKD and expands the known variant spectrum.
- Identified pathogenic patterns in fetal PKD provide insights for prenatal diagnosis and genetic counseling.
Abstract:
Polycystic kidney disease (PKD) is known to occur in three main forms, namely autosomal dominant PKD (ADPKD), autosomal recessive PKD (ARPKD) and syndromic PKD (SPKD), based on the clinical manifestations and genetic causes, which are diagnosable from the embryo stage to the later stages of life. Selection of the genetic test for the individuals with diagnostic imaging reports of cystic kidneys without a family history of the disease continues to be a challenge in clinical practice. With the objective of maintaining a limit on the time and medical cost of the procedure, a practical strategy for genotyping and targeted validation to resolve cystogene variations was developed in our clinical laboratory, which combined the techniques of whole-exome sequencing (WES), Long-range PCR (LR-PCR), Sanger sequencing and multiplex ligation-dependent probe amplification (MLPA) to work in a stepwise approach. In this context, twenty-six families with renal polycystic disorders were enrolled in the present study. Thirty-two variants involving four ciliary genes (PKD1, PKHD1, TMEM67 and TMEM107) were identified and verified in 23 families (88.5%, 23/26), which expanded the variant spectrum by 16 novel variants. Pathogenic variations in five foetuses of six families diagnosed with PKD were identified using prenatal ultrasound imaging. Constitutional biallelic and digenic variations constituted the pathogenic patterns in these foetuses. The preliminary clinical data highlighted that the WES + LR PCR-based workflow followed in the present study is efficient in detecting divergent variations in PKD. The biallelic and digenic mutations were revealed as the main pathogenic patterns in the foetuses with PKD.
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