In vitro fertilization (IVF) in mammals: epigenetic and developmental alterations. Scientific and bioethical implications for IVF in humans
Оплодотворение in vitro (ЭКО) у млекопитающих: эпигенетические и developmental-изменения. Научные и биоэтические аспекты ЭКО у человека
2015-12-01
SCID: 54.1/3pp2q3gk
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assisted reproductive technologiesepigenetic reprogrammingin vitro fertilizationlarge offspring syndromemammalian embryos
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Abstract (AI)
The advent of in vitro fertilization (IVF) in animals and humans implies an extraordinary change in the environment where the beginning of a new organism takes place. In mammals fertilization occurs in the maternal oviduct, where there are unique conditions for guaranteeing the encounter of the gametes and the first stages of development of the embryo and thus its future. During this period a major epigenetic reprogramming takes place that is crucial for the normal fate of the embryo. This epigenetic reprogramming is very vulnerable to changes in environmental conditions such as the ones implied in IVF, including in vitro culture, nutrition, light, temperature, oxygen tension, embryo-maternal signaling, and the general absence of protection against foreign elements that could affect the stability of this process. The objective of this review is to update the impact of the various conditions inherent in the use of IVF on the epigenetic profile and outcomes of mammalian embryos, including superovulation, IVF technique, embryo culture and manipulation and absence of embryo-maternal signaling. It also covers the possible transgenerational inheritance of the epigenetic alterations associated with assisted reproductive technologies (ART), including its phenotypic consequences as is in the case of the large offspring syndrome (LOS). Finally, the important scientific and bioethical implications of the results found in animals are discussed in terms of the ART in humans.
Key Findings
1
Animal evidence raises important scientific and bioethical concerns regarding the safety and implications of applying assisted reproductive technologies in humans.
2
Epigenetic alterations associated with assisted reproductive technologies may be transmitted across generations and contribute to phenotypes such as large offspring syndrome.
3
Epigenetic reprogramming during early mammalian development is highly vulnerable to IVF-related conditions, including culture, nutrition, light, temperature, oxygen tension, and embryo manipulation.
4
IVF alters the natural oviductal environment during fertilization and early embryonic development, potentially affecting subsequent embryo fate.
5
Superovulation, IVF procedures, embryo culture, and the absence of embryo–maternal signaling can modify embryonic epigenetic profiles and developmental outcomes.
Research Object
Mammalian embryos produced through in vitro fertilization and related assisted reproductive technologies
Research Subject
The effects of IVF-related environmental conditions and procedures on embryonic epigenetic reprogramming, developmental outcomes, and possible transgenerational inheritance
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2015-12-01
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