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Identification and Multilineage Potential Research of a Novel Type of Adipose-Derived Mesenchymal Stem Cells from Goose Inguinal Groove

机译:叶腹沟槽新型脂肪衍生间充质干细胞的鉴定和多重潜在研究

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Adipose tissue-derived mesenchymal stem cells (ADSCs) play a crucial role in the field of regenerative medicine and tissue repair for its own unique features. However, up to date, the isolation and characterizations of multidifferentiation potentials of goose ADSCs are still uncertain. In this study, we successfully isolated ADSCs from goose inguinal groove in vitro for the first time and also attempted to unravel its fundamental differentiation potentials and genetic characteristics. The results showed that isolated ADSCs exhibited a typical fibroblast-like morphology and high proliferative potential, could be passaged for at least 40 passages and maintained high hereditary stability with more than 92.2% of cells were diploid (2n=78) by G-banding analysis. Moreover, the ADSCs could express pluripotent marker gene (OCT4) and mesenchymal stem cells-related surface antigens, which are similar to previously reported human ADSCs. Additionally, the goose ADSCs could be induced to transdifferentiate into cells of three layers in vitro, such as osteoblasts, chondrocytes, and adipocytes derived from mesoderm, neurocytes from ectoderm, and hepatocytes of the endoderm. Most of all, we confirmed that the induced -like cells and hepatocytes had metabolic functions similar to normal cells in vivo. Taken together, these results demonstrated the multidifferentiation potentials of ADSCs in vitro, which conferred an appealing candidate for cell regenerative therapy.
机译:脂肪组织衍生的间充质干细胞(ADSCs)在其自身独特的特征中发挥着再生医学和组织修复领域的至关重要作用。然而,迄今为止,鹅ADSC的多草化潜力的隔离和特征仍然不确定。在这项研究中,我们首次成功地将Adsc从鹅腹股沟沟中分离出来,并且还试图揭开其基本分化潜力和遗传特征。结果表明,分离的AdSCs表现出典型的成纤维细胞样形态和高增殖势,可以传代至少40个通道,并且通过G型分析将超过92.2%的细胞保持高遗传性稳定性并保持高92.2%的细胞(2n = 78) 。此外,ADSC可以表达多能标记基因(OCT4)和间充质干细胞相关的表面抗原,其类似于先前报道的人ADSCs。另外,可以诱导鹅ADSCs以将三层的细胞转化为在体外的三层细胞中,例如从中胚层,来自外枝形状的中胚层,神经细胞和内胚层的肝细胞衍生的骨质细胞和脂肪细胞。大多数情况下,我们证实诱导的 - 样细胞和肝细胞具有与体内正常细胞类似的代谢功能。总之,这些结果证明了体外ADSCs的多草体潜力,其赋予了细胞再生治疗的吸引人候选者。

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