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首页> 外文期刊>The Journal of Reproduction and Development >Mouse androgenetic embryonic stem cells differentiated to multiple cell lineages in three embryonic germ layers in vitro.
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Mouse androgenetic embryonic stem cells differentiated to multiple cell lineages in three embryonic germ layers in vitro.

机译:小鼠雄激素胚胎干细胞在体外三个胚层中分化为多种细胞谱系。

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The embryos of some rodents and primates can precede early development without the process of fertilization; however, they cease to develop after implantation because of restricted expressions of imprinting genes. Asexually developed embryos are classified into parthenote/gynogenote and androgenote by their genomic origins. Embryonic stem cells (ESCs) derived from asexual origins have also been reported. To date, ESCs derived from parthenogenetic embryos (PgESCs) have been established in some species, including humans, and the possibility to be alternative sources for autologous cell transplantation in regenerative medicine has been proposed. However, some developmental characteristics, which might be important for therapeutic applications, such as multiple differentiation capacity and transplantability of the ESCs of androgenetic origin (AgESCs) are uncertain. Here, we induced differentiation of mouse AgESCs and observed derivation of neural cells, cardiomyocytes and hepatocytes in vitro. Following differentiated embryoid body (EB) transplantation in various mouse strains including the strain of origin, we found that the EBs could engraft in theoretically MHC-matched strains. Our results indicate that AgESCs possess at least two important characteristics, multiple differentiation properties in vitro and transplantability after differentiation, and suggest that they can also serve as a source of histocompatible tissues for transplantation.
机译:一些啮齿动物和灵长类动物的胚胎可以先于早期发育而无需受精。然而,由于印迹基因的表达受限制,它们在植入后不再发育。无性发育的胚胎按其基因组起源分为单性生殖/雌雄同体和雄性雄蕊。也已经报道了无性起源的胚胎干细胞(ESC)。迄今为止,已经在包括人类在内的一些物种中建立了来自孤雌生殖胚胎(PgESC)的ESC,并且已经提出了在再生医学中作为自体细胞移植的替代来源的可能性。然而,某些发展特征对于治疗应用可能是重要的,例如,多种分化能力和雄激素起源ESC(AgESC)的可移植性尚不确定。在这里,我们诱导了小鼠AgESCs的分化,并观察了体外神经细胞,心肌细胞和肝细胞的衍生。在分化的类胚体(EB)移植到包括来源菌株在内的各种小鼠品系中后,我们发现EBs可以植入理论上与MHC匹配的品系。我们的结果表明,AgESCs具有至少两个重要特征,即体外的多种分化特性和分化后的可移植性,并表明它们还可以作为组织相容性组织的来源。

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