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小鼠和农场动物胚胎及细胞操作的发育后果。

Developmental consequences of embryo and cell manipulation in mice and farm animals.

作者信息

McEvoy T G, Robinson J J, Sinclair K D

机构信息

Scottish Agricultural College, Animal Biology Division, Craibstone Estate, Bucksburn, Aberdeen AB21 9YA, UK.

出版信息

Reproduction. 2001 Oct;122(4):507-18.

Abstract

Advances in biotechnology in recent decades have revolutionized our understanding of early mammalian development and promise to provide ever more finely tuned and precisely targeted techniques for genetic enhancement of domestic animal species. In demonstrating what is both technically and biologically possible, not only in mice but also in larger animal species, research has provided hope that previously intractable diseases and genetic defects can be successfully combated. Crucial to this research is the ability to culture oocytes, embryos and somatic cells in vitro and to sustain their development without inducing adverse short- or long-term consequences. There is a need to refine current culture strategies in farm animal species to avoid jeopardizing their dependent technologies. A key to resolving current limitations of culture strategies is to identify, acknowledge and then address those features of in vitro culture that compromise early regulation of mammalian development. The aim of this review is to appraise critically in vitro embryo and somatic cell production strategies in the context of their impact on developmental competence and normality at embryonic, fetal and later stages. In addition, effects of physically manipulating embryos and cells, most notably via nuclear and gene transfer technologies, are considered with a view to identifying how detrimental consequences can be avoided.

摘要

近几十年来,生物技术的进步彻底改变了我们对哺乳动物早期发育的理解,并有望为家畜物种的基因改良提供更加精细和精准靶向的技术。通过展示在技术和生物学上哪些是可行的,不仅在小鼠中,而且在更大的动物物种中,研究带来了希望,即以前难以治疗的疾病和遗传缺陷能够得到成功应对。这项研究的关键在于能够在体外培养卵母细胞、胚胎和体细胞,并维持它们的发育而不引发不利的短期或长期后果。需要改进目前家畜物种的培养策略,以避免危及它们所依赖的技术。解决当前培养策略局限性的关键在于识别、认识并解决体外培养中那些影响哺乳动物早期发育调控的因素。本综述的目的是在体外胚胎和体细胞生产策略对胚胎、胎儿及后续阶段发育能力和正常性的影响背景下,对其进行批判性评估。此外,还考虑了对胚胎和细胞进行物理操作(最显著的是通过核移植和基因转移技术)的影响,以确定如何避免有害后果。

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