Literature DB >> 12029077

Spectral karyotyping of fresh, non-inseminated oocytes.

Mireia Sandalinas1, Carmen Márquez, Santiago Munné.   

Abstract

The object of this study was to determine the mechanisms producing aneuploidy in female meiosis I by analysing the whole chromosome complement of human non-inseminated and unfertilized fresh oocytes. For this purpose, 131 fresh oocytes were obtained from 16 oocyte donors (24-48 years old). These oocytes were fixed immediately after retrieval and 47 good quality metaphases from 13 donors were analysed by spectral karyotyping to identify all 23 chromosome types. The data was divided into two maternal age groups, 24-34 (n = 31) and > or = 35 years (n = 16). More non-disjunction (13 and 25%), unbalanced predivision (10 and 44%, P < 0.01) and balanced predivision (6 and 62%, P < 0.001) events were found in the older group of oocytes. There was an increase in balanced predivision with decreasing chromosome size (P < 0.001). The present results are the first obtained in fresh oocytes where all chromosomes were specifically identified, and support previous theories that predivision of chromatids is a major factor causing aneuploidy. Previous reports with inseminated, non-fertilized oocytes fixed > or = 24 h after retrieval suffered from artefactual predivision of chromatids triggered by in-vitro ageing of oocytes.

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Year:  2002        PMID: 12029077     DOI: 10.1093/molehr/8.6.580

Source DB:  PubMed          Journal:  Mol Hum Reprod        ISSN: 1360-9947            Impact factor:   4.025


  15 in total

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5.  Association between amino acid turnover and chromosome aneuploidy during human preimplantation embryo development in vitro.

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6.  Aneuploidy involving chromosome 1 in failed-fertilized human oocytes is unrelated to maternal age.

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7.  Non-meiotic chromosome instability in human immature oocytes.

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8.  A study of meiotic segregation in a fertile human population following ovarian stimulation with recombinant FSH-LH.

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9.  Differing molecular response of young and advanced maternal age human oocytes to IVM.

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Review 10.  Meiosis and maternal aging: insights from aneuploid oocytes and trisomy births.

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