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Design of the Artificial Acellular Feeder Layer for the Efficient Propagation of Mouse Embryonic Stem Cells

机译:高效人工脱细胞饲养层的设计 小鼠胚胎干的繁殖 细胞

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摘要

Embryonic stem (ES) cells are pluripotent-undifferentiated cells that have a great interest for the investigation of developmental biology. Murine ES cells maintain their pluripotency by the supplementation of the leukemia inhibitory factor (LIF). LIF is reported to act as a matrix-anchored form, and immobilized cytokines are useful to sustain their signaling on target cells. In this study, we used the immobilizable fusion protein composed of LIF and IgG-Fc region, which was used as a model of the matrix-anchored form of LIF to establish a novel system for ES cell culture and to investigate the effect of immobilized LIF on maintenance of ES cell pluripotency. Mouse ES cells maintained their undifferentiated state on the surface coated with LIF-Fc. Furthermore, when cultured on the co-immobilized surface with LIF-Fc and E-cadherin-Fc, mouse ES cells showed characteristic scattering morphologies without colony formation, and they could maintain their undifferentiated state and pluripotency without additional LIF supplementation. The activation of LIF signaling was sustained on the co-immobilized surface. These results indicate that immobilized LIF and E-cadherin can maintain mouse ES cells efficiently and that the immobilizable LIF-Fc fusion protein is useful for the investigation of signaling pathways of an immobilized form of LIF in the maintenance of ES cell pluripotency.
机译:胚胎干(ES)细胞是多能未分化细胞,对发育生物学的研究非常感兴趣。鼠ES细胞通过补充白血病抑制因子(LIF)来维持其多能性。据报道,LIF起基质锚定形式的作用,而固定化的细胞因子可用于维持其在靶细胞上的信号传导。在这项研究中,我们使用了由LIF和IgG-Fc区组成的固定化融合蛋白,该蛋白被用作LIF基质锚定形式的模型,以建立用于ES细胞培养的新系统并研究固定化LIF的作用。维持ES细胞的多能性。小鼠ES细胞在用LIF-Fc包被的表面上保持其未分化状态。此外,当在与LIF-Fc和E-钙粘蛋白-Fc共同固定的表面上培养时,小鼠ES细胞显示出特征性的散射形态,而没有集落形成,并且无需额外的LIF补充即可保持其未分化状态和多能性。 LIF信号的激活在共固定的表面上得以维持。这些结果表明,固定的LIF和E-钙粘着蛋白可以有效地维持小鼠ES细胞,而固定的LIF-Fc融合蛋白可用于 固定形式的LIF的信号传导途径的研究 维持ES细胞的多能性。

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