Embryos, DOHaD and David Barker

Author:

Fleming T. P.,Velazquez M. A.,Eckert J. J.

Abstract

The early embryo and periconceptional period is a window during which environmental factors may cause permanent change in the pattern and characteristics of development leading to risk of adult onset disease. This has now been demonstrated across small and large animal models and also in the human. Most evidence of periconceptional ‘programming’ has emerged from maternal nutritional models but also other in vivo and in vitro conditions including assisted reproductive treatments, show consistent outcomes. This short review first reports on the range of environmental in vivo and in vitro periconceptional models and resulting long-term outcomes. Second, it uses the rodent maternal low protein diet model restricted to the preimplantation period and considers the stepwise maternal-embryonic dialogue that comprises the induction of programming. This dialogue leads to cellular and epigenetic responses by the embryo, mainly identified in the extra-embryonic cell lineages, and underpins an apparently permanent change in the growth trajectory during pregnancy and associates with increased cardiometabolic and behavioural disease in adulthood. We recognize the important advice of David Barker some years ago to investigate the sensitivity of the early embryo to developmental programming, an insight for which we are grateful.

Publisher

Cambridge University Press (CUP)

Subject

Medicine (miscellaneous)

Reference74 articles.

1. Human embryos from overweight and obese women display phenotypic and metabolic abnormalities

2. Nutrient control of TORC1, a cell-cycle regulator

3. Insulin and branched-chain amino acid depletion during mouse in vitro preimplantation embryo development alters postnatal growth and cardiovascular physiology. World Congress of Animal Reproduction 2014, Edinburgh, UK;Velazquez;Reproduction Abstracts,2014

4. The longer-term health outcomes for children born as a result of IVF treatment. Part II-Mental health and development outcomes

5. In Vitro Fertilization Affects Growth and Glucose Metabolism in a Sex-Specific Manner in an Outbred Mouse Model1

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