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Implications of Assisted Reproductive Technologies for Pregnancy Outcomes in Mammals.
Annual Review of Animal Biosciences ( IF 12.0 ) Pub Date : 2020-02-18 , DOI: 10.1146/annurev-animal-021419-084010
Peter J Hansen 1
Affiliation  

Development of assisted reproductive technologies has been driven by the goals of reducing the incidence of infertility, increasing the number of offspring from genetically elite animals, facilitating genetic manipulation, aiding preservation and long-distance movement of germplasm, and generating research material. Superovulation is associated with reduced fertilization rate and alterations in endometrial function. In vitro production of embryos can have a variety of consequences. Most embryos produced in vitro are capable of establishing pregnancy and developing into healthy neonatal animals. However, in vitro production is associated with reduced ability to develop to the blastocyst stage, increased incidence of failure to establish pregnancy, placental dysfunction, and altered fetal development. Changes in the developmental program mean that some consequences of being produced in vitro can extend into adult life. Reduced competence of the embryo produced in vitro to develop to the blastocyst stage is caused largely by disruption of events during oocyte maturation and fertilization. Conditions during embryo culture can affect embryo freezability and competence to establish pregnancy after transfer. Culture conditions, including actions of embryokines, can also affect the postnatal phenotype of the resultant progeny.

中文翻译:


辅助生殖技术对哺乳动物妊娠结局的影响。

旨在减少不孕症发生率,增加来自遗传精英动物的后代数量,促进遗传操纵,帮助种质的保存和远距离移动以及产生研究材料的目标推动了辅助生殖技术的发展。超排卵与受精率降低和子宫内膜功能改变有关。胚胎的体外生产会产生多种后果。体外产生的大多数胚胎能够建立妊娠并发育为健康的新生动物。然而,体外生产与发育到胚泡阶段的能力降低,未能建立妊娠的发生率增加,胎盘功能障碍和胎儿发育改变有关。发展计划的改变意味着体外产生的某些后果可能会延长到成年寿命。体外产生的胚发展到胚泡期的能力降低主要是由于卵母细胞成熟和受精过程中事件的破坏。胚胎培养过程中的状况可能会影响胚胎的冻结能力和转移后建立妊娠的能力。培养条件,包括胚胎因子的作用,也可能影响所得后代的产后表型。胚胎培养过程中的状况可能会影响胚胎的冻结能力和转移后建立妊娠的能力。培养条件,包括胚胎因子的作用,也可能影响所得后代的产后表型。胚胎培养过程中的状况可能会影响胚胎的冻结能力和转移后建立妊娠的能力。培养条件,包括胚胎因子的作用,也可能影响所得后代的产后表型。

更新日期:2020-02-18
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