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The preimplantation embryo: handle with care

The preimplantation embryo: handle with care
The preimplantation embryo: handle with care
The past decade has seen considerable advances in our understanding of intrinsic developmental mechanisms associated with gametogenesis and embryogenesis and accompanying applications in the fields of reproductive medicine, embryonic stem cell biology, and nuclear reprogramming. However, a new focus has recently emerged concerning the homeostatic regulation of embryonic cells, how this is set, and how it may influence the longitudinal progression and optimization of the developmental program and indeed the phenotype of the offspring. Attention has been drawn to the preimplantation stage of development as a sensitive "window" when in vitro and in vivo manipulations, such as culture conditions or maternal diet, may have critical consequences. In this article, we review how changes in environmental conditions, mediated via a range of epigenetic, cellular, and metabolic mechanisms in the preimplantation embryo, may alter the pattern of cell division, gene expression, morphology, and potential. We consider how fetal and postnatal phenotype may become susceptible to the plasticity of the preimplantation embryo and the risks for adult health and physiology.
preimplantation embryo, metabolic, gene, culture, window, fetal, susceptible, adult health, risks, plasticity, development, postnatal phenotype, preimplantation stage, reproductive, fields, embryogenesis, gametogenesis, embryonic stem cell, homeostatic regulation, phenotype, indeed, developmental, optimization, intrinsic developmental
175-85
Watkins, Adam J.
2d535c61-2df0-4410-a1b4-3aa1be5a43bb
Papenbrock, Tom
325a68db-15b5-4c99-a9e6-264a5c77ee18
Fleming, Tom P.
2abf761a-e5a1-4fa7-a2c8-12e32d5d4c03
Watkins, Adam J.
2d535c61-2df0-4410-a1b4-3aa1be5a43bb
Papenbrock, Tom
325a68db-15b5-4c99-a9e6-264a5c77ee18
Fleming, Tom P.
2abf761a-e5a1-4fa7-a2c8-12e32d5d4c03

Watkins, Adam J., Papenbrock, Tom and Fleming, Tom P. (2008) The preimplantation embryo: handle with care. Seminars in Reproductive Medicine, 26 (2), 175-85. (doi:10.1055/s-2008-1042956).

Record type: Article

Abstract

The past decade has seen considerable advances in our understanding of intrinsic developmental mechanisms associated with gametogenesis and embryogenesis and accompanying applications in the fields of reproductive medicine, embryonic stem cell biology, and nuclear reprogramming. However, a new focus has recently emerged concerning the homeostatic regulation of embryonic cells, how this is set, and how it may influence the longitudinal progression and optimization of the developmental program and indeed the phenotype of the offspring. Attention has been drawn to the preimplantation stage of development as a sensitive "window" when in vitro and in vivo manipulations, such as culture conditions or maternal diet, may have critical consequences. In this article, we review how changes in environmental conditions, mediated via a range of epigenetic, cellular, and metabolic mechanisms in the preimplantation embryo, may alter the pattern of cell division, gene expression, morphology, and potential. We consider how fetal and postnatal phenotype may become susceptible to the plasticity of the preimplantation embryo and the risks for adult health and physiology.

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More information

Published date: March 2008
Keywords: preimplantation embryo, metabolic, gene, culture, window, fetal, susceptible, adult health, risks, plasticity, development, postnatal phenotype, preimplantation stage, reproductive, fields, embryogenesis, gametogenesis, embryonic stem cell, homeostatic regulation, phenotype, indeed, developmental, optimization, intrinsic developmental

Identifiers

Local EPrints ID: 142559
URI: http://eprints.soton.ac.uk/id/eprint/142559
PURE UUID: ea7f5234-c1b4-4a28-ab3a-128de497ac35

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Date deposited: 01 Apr 2010 15:38
Last modified: 14 Mar 2024 00:40

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Contributors

Author: Adam J. Watkins
Author: Tom Papenbrock
Author: Tom P. Fleming

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