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Clonal Multilineage Differentiation of Murine Common Pluripotent Stem Cells Isolated from Skeletal Muscle and Adipose Stromal Cells

机译:骨骼肌中鼠常见多能干细胞的克隆多因素分化骨骼肌和脂肪组细胞分离

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Pluripotent stem cells (PSCs) with transdifferentiation capacity may provide useful therapeutic modalities in the areas of cellular restoration and regenerative medicine. The utility of PSCs depends on their ability to respond to different stimuli and to adapt to tissue-specific differentiation conditions. Given that a number of cells possessing characteristics of PSCs have been identified and isolated from several adult murine tissues, we hypothesized that a common PSC may exist in multiple murine tissues and that these cells may either reside permanently in specific sites or continue to circulate and colonize tissues as needed. Previous data from our laboratory suggest that PSCs exhibiting an immunophenotype of CD45~?Sca-1~+c-kit~?Thy-1~+ can be isolated from multiple murine tissues and may represent putative common PSCs (CoPSCs). To investigate whether the multiple tissue differentiation potential observed with these cells resulted from the presence of different tissue-restricted progenitors within CD45~?Sca-1~+c-kit~?Thy-1~+ cells or was the product of clonal differentiation of CoPSCs, clonality studies were performed. Single skeletal muscle (SM)-derived CoPSCs were expanded for 10 days, and progeny cells were split into three culture conditions designed to stimulate myogenic, adipogenic, and neurogenic differentiation. Analysis of 600 clones indicated that 2.16%, 0.83%, and 0.33% of the total number of plated single cells were capable of unipotent, bipotent, and tripotent differentiation, respectively, into combinations of myocytes, adipocytes, and neuronal cells. Given that SM-derived CoPSCs represent 4.78% of the total cells analyzed, tripotent CoPSCs made up 0.016% of the total muscle cells. Similar results were obtained in clonal analyses using adipose stromal cell (ASC)-derived CoPSCs, suggesting that both SM- and ASC-derived CoPSCs may be phenotypically and functionally identical. Taken together, these data demonstrate that a common PSC can be identified in different murine tissues and suggest that a small fraction of these cells are capable of clonal differentiation into multiple cell types.
机译:具有转晶体能力的多能干细胞(PSC)可以在细胞恢复和再生医学区域中提供有用的治疗方式。 PSCs的效用取决于它们对不同刺激的能力并适应组织特异性分化条件。鉴于已鉴定出具有PSC特征的许多细胞,并从几个成年鼠组织中分离,我们假设常见的PSC可以存在于多个鼠组织中,并且这些细胞可以永久地在特定位点处存在或继续循环和殖民根据需要组织。来自我们实验室的以前的数据表明,PSCS表现出CD45〜〜+ C-kit的免疫蛋白酶型可以从多个鼠组织中分离出来,并且可以代表推定的常见PSC(COPSCs)。为了研究与这些细胞观察到的多种组织分化电位是否由于CD45〜〜+ C-kit内的不同组织限制祖细胞~~~~~ +细胞或是克隆分化的产物COPSCS,克隆性研究进行了。将单个骨骼肌(SM)的COPSCs扩大10天,并将后代细胞分成三种培养条件,旨在刺激肌原,脂肪和神经源性分化。 600克隆的分析表明,2.16%,0.83%和0.33%的镀覆单细胞总数的能力分别能够分别为肌细胞,脂肪细胞和神经元细胞的组合中的单一。鉴于SM衍生的COPSCs占分析的总细胞的4.78%,Topotent COPSCS组成的0.016%的总肌肉细胞。使用脂肪基质细胞(ASC)的COPSCs在克隆分析中获得了类似的结果,表明SM和ASC衍生的COPSC均可表齐型和功能相同。总之,这些数据表明,可以在不同的鼠组织中鉴定普通的PSC并表明这些细胞的一小部分能够分化为多个细胞类型。

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