Literature DB >> 26656938

Sex Chromosome Mosaicism in the Gonads of DSD Patients: A Karyotype/Phenotype Correlation.

Alaa K Kamel1, Hoda M Abd El-Ghany, Mona K Mekkawy, Manal M Makhlouf, Inas M Mazen, Nabil El Dessouky, Wael Mahmoud, Shereen A Abd El Kader.   

Abstract

Sex chromosome mosaicism results in a large clinical spectrum of disorders of sexual development (DSD). The percentage of 45,X cells in the developing gonad plays a major role in sex determination. However, few reports on the gonadal mosaic status have been published, and the phenotype is usually correlated with peripheral lymphocyte karyotypes, which makes the phenotype prediction imprecise. This study was conducted on 7 Egyptian DSD patients to demonstrate the effect of sex chromosome constitution of both blood lymphocytes and gonadal tissues on the phenotypic manifestations. Conventional cytogenetic and FISH analyses of blood lymphocytes were conducted, and laparoscopy with gonadal biopsy was performed for histopathologic examination and FISH analysis. Gonosomal mosaicism was detected in 3 patients who had a non-mosaic chromosome pattern in blood lymphocytes. Two patients showed the same type of sex chromosome mosaicism in both the blood and gonadal tissues but with different distributions. Two other patients revealed a non-mosaic pattern in both tissues. The present study elucidates the importance of examining sex chromosome mosaicism in gonadal tissues of DSD patients and highlights the critical role of 45,X mosaicism which can lead to serious effects during early gonadal organogenesis.
© 2015 S. Karger AG, Basel.

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Year:  2015        PMID: 26656938     DOI: 10.1159/000442332

Source DB:  PubMed          Journal:  Sex Dev        ISSN: 1661-5425            Impact factor:   1.824


  1 in total

1.  Application of the prenatal BACs-on-Beads™ assay for rapid prenatal detection of sex chromosome mosaicism.

Authors:  Min Zhang; LingJi Chen; Meihuan Chen; Yan Wang; Bin Liang; Na Lin; Xiaoqing Wu; Linshuo Wang; Liangpu Xu; Hailong Huang
Journal:  Mol Genet Genomics       Date:  2022-07-28       Impact factor: 2.980

  1 in total

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