Literature DB >> 12202430

Morphological and cytogenetic analysis of human giant oocytes and giant embryos.

Hanna Balakier1, Derek Bouman, Agata Sojecki, Clifford Librach, Jeremy A Squire.   

Abstract

BACKGROUND: Giant binuclear oocytes occur with considerable frequency in human ovaries, but their ultimate fate remains unknown. We report the morphology, cytogenetics and developmental potential of human giant oocytes from patients undergoing assisted reproductive technologies. METHODS AND
RESULTS: A total of 44 giant oocytes was collected from patients aged 22-44 years old, with an overall frequency of 0.3% (44/14 272 oocytes). Giant oocytes were approximately 30% larger in diameter than normal oocytes (mean 200.4 versus 154.7 micro m, P = 0.0001). Two different morphological patterns were observed among giant unfertilized and fertilized oocytes. All unfertilized oocytes appeared to be diploid and contained either one or two metaphase plates (46 or 2 x 23 chromosomes), and one or two polar bodies respectively. Consequently, fertilized giant oocytes exhibited either two or three pronuclei, or two or four polar bodies. Both types of giant zygotes were capable of normal cleavage and development to blastocyst stage. Four giant embryos were analysed by interphase fluorescence in-situ hybridization using probes for chromosomes 9, 22, X and Y, and all appeared chromosomally abnormal with numerical alterations indicative of ploidy change.
CONCLUSIONS: Giant oocytes might be a possible source of human digynic triploidy. To avoid undesired miscarriages, giant embryos originated from either two- or three-pronuclear giant zygotes should be excluded from uterine transfers.

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Year:  2002        PMID: 12202430     DOI: 10.1093/humrep/17.9.2394

Source DB:  PubMed          Journal:  Hum Reprod        ISSN: 0268-1161            Impact factor:   6.918


  13 in total

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Review 4.  The potential significance of binovular follicles and binucleate giant oocytes for the development of genetic abnormalities.

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5.  Does morphological assessment predict oocyte developmental competence? A systematic review and proposed score.

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6.  Human oocyte chromosome analysis: complicated cases and major pitfalls.

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Review 7.  Predictive value of oocyte morphology in human IVF: a systematic review of the literature.

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8.  Early Fertilization Abnormalities in the Human: An Exhausted Area of Research?

Authors:  Bernd Rosenbusch
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9.  Oocyte Scoring Enhances Embryo-Scoring in Predicting Pregnancy Chances with IVF Where It Counts Most.

Authors:  Emanuela Lazzaroni-Tealdi; David H Barad; David F Albertini; Yao Yu; Vitaly A Kushnir; Helena Russell; Yan-Guang Wu; Norbert Gleicher
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10.  Chromosomal analyses of human giant diploid oocytes by next-generation sequencing.

Authors:  Hiroomi Kawano; Naoki Yamashita; Junya Ito; Naomi Kashiwazaki
Journal:  Reprod Med Biol       Date:  2021-03-18
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