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Updated: Oct 3, 2026

Exploring X Chromosomal Aberrations in Ovarian Cells by Using Fluorescence In Situ Hybridization
Published on: April 7, 2023
Allelic imbalance is not restricted to numerically abnormal chromosomes in epithelial ovarian tumours
1Department of Pathology, Duncan Building, Royal Liverpool University Hospital, Daulby Street, Liverpool L69 3GA, Merseyside, UK.
Abstract:
In this study, 23 low malignant potential (LMP) and 27 invasive epithelial ovarian tumours have been examined by microdissection and microsatellite polymerase chain reaction (PCR) for allelic imbalance (AI) at loci on the p and q arms of chromosomes 1, 11, 17, and X, and the data have been compared with interphase cytogenetics for numerical abnormalities (aneusomy) of these chromosomes. AI was uncommon in LMP tumours (5 of 23 at 9 of 146 informative loci) but was significantly more common (p<0.001) in invasive carcinomas (21 of 27 at 47 of 168 informative loci). This difference remained when LMP tumours were compared specifically with stage I carcinomas (p<0.001). A greater number of loci were involved in AI amongst serous than amongst mucinous carcinomas (p=0.015). AI was present at significantly more loci in carcinomas showing aneusomy by interphase cytogenetics than in those showing no numerical chromosome abnormalities (p<0.001). However, amongst the carcinomas showing aneusomy, AI was as frequent at loci on chromosomes with no numerical abnormality as at those with the numerical changes. These data demonstrate that aneusomy and AI are interrelated phenomena but that AI does not occur simply as a consequence of numerical chromosome changes.
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