Literature DB >> 18503052

The four blastomeres of a 4-cell stage human embryo are able to develop individually into blastocysts with inner cell mass and trophectoderm.

Hilde Van de Velde1, Greet Cauffman, Herman Tournaye, Paul Devroey, Inge Liebaers.   

Abstract

BACKGROUND: Early mammalian blastomeres are thought to be flexible and totipotent allowing the embryo to overcome perturbations in its organization during preimplantation development. In the past, experiments using single blastomeres from 2-, 4- and 8-cell stage mammalian embryos have provided evidence that at least some of the isolated cells can develop into healthy fertile animals and therefore are totipotent. We investigated whether isolated blastomeres of human 4-cell stage embryos could develop in vitro into blastocysts with trophectoderm (TE) and inner cell mass (ICM).
METHODS: Six 4-cell stage human embryos were split and the four blastomeres were cultured individually. The expression of NANOG, a marker for ICM cells, was analysed by immunocytochemistry.
RESULTS: The majority of the blastomere-derived embryos followed the normal pattern of development with compaction on Day 4 and cavitation on Day 5 and developed into small blastocysts with TE and ICM on Day 6 (n = 12). The four cells of one embryo were individually capable of developing into blastocysts with TE and ICM, and NANOG was expressed in the ICM.
CONCLUSIONS: Although based on a small number of embryos, we conclude that the blastomeres of a 4-cell stage human embryo are flexible and able to develop into blastocysts with ICM and TE.

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Year:  2008        PMID: 18503052     DOI: 10.1093/humrep/den190

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


  30 in total

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3.  Totipotency: what it is and what it is not.

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6.  Developmental capacity and pregnancy rate of tetrahedral- versus non-tetrahedral-shaped 4-cell stage human embryos.

Authors:  G Cauffman; G Verheyen; H Tournaye; H Van de Velde
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10.  Human embryonic stem cell lines derived from single blastomeres of two 4-cell stage embryos.

Authors:  Mieke Geens; Ileana Mateizel; Karen Sermon; Martine De Rycke; Claudia Spits; Greet Cauffman; Paul Devroey; Herman Tournaye; Inge Liebaers; Hilde Van de Velde
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