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Updated: Jul 24, 2025

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Spectral Karyotyping to Study Chromosome Abnormalities in Humans and Mice with Polycystic Kidney Disease
Published on: February 3, 2012
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A rare ring chromosome 21 abnormality is associated with azoospermia in two different phenotypically normal cases
Ezgi Gizem Berkay1,2, Birsen Karaman1,3, Seher Başaran1
1Istanbul Medical Faculty, Department of Medical Genetics, Istanbul University, Istanbul, Turkey.
Systems Biology in Reproductive Medicine
|July 4, 2023
Summary
This study identified a rare ring chromosome 21 abnormality in two men with azoospermia and infertility. Further analysis is needed to understand its impact on male fertility.
Area of Science:
- Genetics
- Reproductive Biology
- Human Molecular Biology
Background:
- Azoospermia, a cause of male infertility, requires etiological investigation.
- Karyotyping is the standard diagnostic method for identifying chromosomal abnormalities.
- Phenotypic, physical, and hormonal examinations were normal in the studied cases.
Purpose of the Study:
- To investigate chromosomal abnormalities in two male cases with azoospermia and infertility.
- To identify potential candidate genes associated with the observed chromosomal abnormality and infertility.
- To explore the genetic basis of male infertility linked to rare chromosomal variations.
Main Methods:
- Spermiogram analysis for azoospermia diagnosis.
- G-banding and NOR staining for karyotyping.
- Subtelomeric FISH and array comparative genomic hybridization (CGH) for detailed chromosomal analysis.
- Bioinformatics, protein, and pathway analyses for candidate gene identification.
Main Results:
- A rare ring chromosome 21 abnormality was detected in both cases.
- No microdeletions were found on the Y chromosome.
- FISH and array CGH analyses characterized the ring abnormality and deleted regions.
- Candidate genes were identified through integrated bioinformatics and pathway analyses.
Conclusions:
- Ring chromosome 21 is a rare finding in male azoospermia and infertility.
- Detailed cytogenomic and bioinformatic analyses are crucial for understanding the genetic etiology of infertility.
- Further research is warranted to elucidate the role of identified candidate genes in male reproductive function.
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