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Derivation and characterization of pluripotent cell lines from pig embryos of different origins.

机译:来自不同来源的猪胚胎的多能细胞系的衍生和表征。

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Embryonic stem cells (ESCs) hold great promise for therapeutic use and represent a unique tool for investigating the process of self-renewal and differentiation. The properties that make ESCs unique are their capacity of unlimited self-renewal coupled with the property of re-entering the developmental process if returned inside a blastocyst. Such plasticity enable ESCs to form all embryonic tissues including germ cells. However, these remarkable properties, at present, have been demonstrated only for mouse ESCs even if cells with somehow more limited capacities have been derived in many different species including humans. The isolation of pluripotent embryonic cells lines from human embryos marked a crucial change of perspective in evaluating the properties defining an embryonic stem cell lines moving the focus from the generation of a germ-line chimera, obviously not feasible nor desirable in human, to the capacity of these cells to differentiate both in vivo and in vitro in fully mature and functional cell types of all kinds. Therefore, ESCs properties in species different from the mouse are being reassessed and re-evaluated, in view of their potential use as experimental models for the development of clinical applications. Among the species that may play a useful role in this field, the pig has a long-standing history as a prime animal model for pre-clinical biomedical applications and therefore, pig ESCs are attracting renewed interest. In this review, we will summarize the current knowledge on this topic and will contrast the relatively limited data available in this species with the much larger wealth of information available for mouse and human ESCs, in an attempt to assess whether or not pig ESCs can actually become a useful tool in the fast growing field of cell therapy..
机译:胚胎干细胞(ESC)具有广阔的治疗前景,是研究自我更新和分化过程的独特工具。使ESC具有独特性的特性是其无限自我更新的能力,以及在胚泡内返回时重新进入发育过程的特性。这种可塑性使ESC能够形成包括生殖细胞在内的所有胚胎组织。然而,目前,即使在包括人类在内的许多不同物种中以某种方式获得了有限能力的细胞,也仅对小鼠胚胎干细胞证明了这些卓越的性能。从人类胚胎中分离多能胚胎细胞系,标志着在评估定义胚胎干细胞系的特性方面的观点发生了重大变化,从而将焦点从人类不可行也不希望的生殖系嵌合体的产生转移到了能力上。这些细胞可以在体内和体外分化为各种类型的完全成熟和功能性细胞。因此,鉴于其作为临床开发应用的实验模型的潜在用途,正在重新评估和重新评估与小鼠不同物种的ESCs特性。在这一领域可能发挥有用作用的物种中,猪作为临床前生物医学应用的主要动物模型已有悠久的历史,因此,猪电调引起了人们的新兴趣。在这篇综述中,我们将总结有关该主题的当前知识,并将此物种中相对有限的数据与大量可用于小鼠和人类ESC的信息进行对比,以试图评估猪ESC是否可以真正成为快速发展的细胞治疗领域的有用工具。

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