首页> 外文期刊>Stem cells and development >Human adipose tissue possesses a unique population of pluripotent stem cells with nontumorigenic and low telomerase activities: potential implications in regenerative medicine.
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Human adipose tissue possesses a unique population of pluripotent stem cells with nontumorigenic and low telomerase activities: potential implications in regenerative medicine.

机译:人类脂肪组织拥有独特的多能干细胞群体,具有非致瘤性和低端粒酶活性:在再生医学中具有潜在意义。

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In this study, we demonstrate that a small population of pluripotent stem cells, termed adipose multilineage-differentiating stress-enduring (adipose-Muse) cells, exist in adult human adipose tissue and adipose-derived mesenchymal stem cells (adipose-MSCs). They can be identified as cells positive for both MSC markers (CD105 and CD90) and human pluripotent stem cell marker SSEA-3. They intrinsically retain lineage plasticity and the ability to self-renew. They spontaneously generate cells representative of all three germ layers from a single cell and successfully differentiate into targeted cells by cytokine induction. Cells other than adipose-Muse cells exist in adipose-MSCs, however, do not exhibit these properties and are unable to cross the boundaries from mesodermal to ectodermal or endodermal lineages even under cytokine inductions. Importantly, adipose-Muse cells demonstrate low telomerase activity and transplants do not promote teratogenesis in vivo. When compared with bone marrow (BM)- and dermal-Muse cells, adipose-Muse cells have the tendency to exhibit higher expression in mesodermal lineage markers, while BM- and dermal-Muse cells were generally higher in those of ectodermal and endodermal lineages. Adipose-Muse cells distinguish themselves as both easily obtainable and versatile in their capacity for differentiation, while low telomerase activity and lack of teratoma formation make these cells a practical cell source for potential stem cell therapies. Further, they will promote the effectiveness of currently performed adipose-MSC transplantation, particularly for ectodermal and endodermal tissues where transplanted cells need to differentiate across the lineage from mesodermal to ectodermal or endodermal in order to replenish lost cells for tissue repair.
机译:在这项研究中,我们证明了成年人类脂肪组织和脂肪来源的间充质干细胞(脂肪间充质干细胞)中存在一小群多能干细胞,称为脂肪多系分化应激持久性(脂肪-缪斯)细胞。可以将它们鉴定为对MSC标记(CD105和CD90)和人多能干细胞标记SSEA-3均为阳性的细胞。它们本质上保留了谱系可塑性和自我更新的能力。它们自发地从单个细胞生成代表所有三个胚层的细胞,并通过细胞因子诱导成功分化为目标细胞。脂肪-MSCs以外的其他细胞也存在于脂肪-MSC中,但是它们不具有这些特性,即使在细胞因子诱导下也无法跨越中胚层,外胚层或内胚层谱系的界限。重要的是,脂肪-缪斯细胞表现出低端粒酶活性,并且移植不能促进体内致畸作用。与骨髓(BM)-和真皮-Muse细胞相比,脂肪-Muse细胞在中胚层谱系标记中表现出更高的表达趋势,而BM-和真皮-Muse细胞在外胚层和内胚层谱系中通常更高。脂肪-缪斯细胞在分化能力上很容易获得并且用途广泛,而端粒酶活性低和畸胎瘤形成不足使这些细胞成为潜在干细胞疗法的实用细胞来源。此外,它们将促进当前进行的脂肪-MSC移植的有效性,特别是对于外胚层和内胚层组织,其中移植的细胞需要从中胚层分化为外胚层或内胚层,以便补充丢失的细胞以进行组织修复。

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