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Characterization, isolation and culture of primordial germ cells in domestic animals: recent progress and insights from the ovine species

机译:家畜中原始生殖细胞的表征,分离和培养:绵羊物种的最新进展和见解

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Primordial germ cell (PGC) allocation, characterization, lineage restriction, and differentiation have been extensively studied in the mouse. Murine PGC can be easily identified using markers as alkaline phosphatase content or the expression of pluripotent markers such as Pou5f1, Nunog, Sox2, Kit, SSEA1, and SSEA4. These tools allowed us to clarify certain aspects of the complex interactions of somatic and germinal cells in the establishment of the germ cell lineage, its segregation from the neighbouring somatic tissue, and the guidance mechanisms during migration that direct most of the germ cells into the genital ridges. Few data are available from other domestic animals and here we reported our preliminary studies on the isolation, characterization, and in vitro culture of sheep PGCs. Sheep PGCs can be identified with the markers previously used in mouse, but, in some cases, these markers are not coherently expressed in the same cell depending on the grade of differentiation and on technical problems related to commercial antibodies used. Pluripotency of PGCs in culture (EGCs) from domestic animals also needs further evaluation even though the derivation of embryonic pluripotent cell lines from large mammals may be an advantage as they are more physiologically similar to the human and perhaps more relevant for clinical translation studies. Comprehensive epigenetic reprogramming of the genome in early germ cells, and derived EGCs including extensive erasure of epigenetic modifications, may be relevant for gaining insight into events that lead to reprogramming and establishment of totipotency. EGCs can differentiate in vitro in a various range of tissues, form embryonic bodies, but in many cases failed to generate tumours when transplanted into immunodeficient mice and are not able to generate germline chimeric animals after their transfer. Such incomplete information clearly indicates the urge to improve the studies on derivation of stem cells in farm animals and shows the need for a multidisciplinary investigation in order to create farm animal models to set up suitable ethical and technical systems for cell regenerative therapies in humans
机译:在小鼠中已经广泛研究了原始生殖细胞(PGC)的分配,表征,谱系限制和分化。使用碱性磷酸酶含量的标记物或多能性标记物(例如Pou5f1,Nunog,Sox2,Kit,SSEA1和SSEA4)的表达,可以轻松鉴定出小鼠PGC。这些工具使我们能够阐明生殖细胞谱系的建立过程中体细胞与生发细胞之间复杂相互作用的某些方面,其与邻近体细胞组织的分离以及在迁移过程中将大多数生殖细胞引导至生殖器的指导机制。脊。很少有其他家畜的数据,在这里我们报告了我们对绵羊PGC的分离,表征和体外培养的初步研究。绵羊PGC可以使用先前在小鼠中使用的标记物进行鉴定,但是在某些情况下,根据分化程度和与所用商业抗体相关的技术问题,这些标记物不会在同一细胞中一致地表达。来自家畜的培养物中PGC的多能性(EGC)也需要进一步评估,尽管从大型哺乳动物中获得胚胎多能细胞系可能是一个优势,因为它们在生理上与人类更相似,并且可能与临床翻译研究更相关。早期生殖细胞中基因组的全面表观遗传重编程以及衍生的EGC(包括广泛擦除表观遗传修饰)可能与深入了解导致重编程和全能的事件有关。 EGC可以在体外在各种组织中分化,形成胚胎小体,但是在许多情况下,当移植到免疫缺陷小鼠中时,它们不能产生肿瘤,并且在转移后不能产生种系嵌合动物。这种不完整的信息清楚地表明了对改进农场动物干细胞衍生研究的渴望,并表明需要进行多学科研究以创建农场动物模型,以建立适用于人类细胞再生疗法的道德和技术体系

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