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首页> 外文期刊>Stem cell research >Adipose-derived stem cells from the brown bear (Ursus arctos) spontaneously undergo chondrogenic and osteogenic differentiation in vitro - ScienceDirect
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Adipose-derived stem cells from the brown bear (Ursus arctos) spontaneously undergo chondrogenic and osteogenic differentiation in vitro - ScienceDirect

机译:棕熊(Ursus arctos)的脂肪干细胞在体外自发进行软骨形成和成骨分化-ScienceDirect

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摘要

In the den, hibernating brown bears do not develop tissue atrophy or organ damage, despite almost no physical activity. Mesenchymal stem cells could play an important role in tissue repair and regeneration in brown bears. Our objective was to determine if adipose tissue-derived stem cells (ASCs) can be recovered from wild Scandinavian brown bears and characterize their differentiation potential. Following immobilization of wild brown bears 7–10?days after leaving the den in mid-April, adipose tissue biopsies were obtained. ASCs were recovered from 6 bears, and shown to be able to undergo adipogenesis and osteogenesis in monolayer cultures and chondrogenesis in pellet cultures. Remarkably, when grown in standard cell culture medium in monolayer cultures, ASCs from yearlings spontaneously formed bone-like nodules surrounded by cartilaginous deposits, suggesting differentiation into osteogenic and chondrogenic lineages. This ability appears to be lost gradually with age. This is the first study to demonstrate stem cell recovery and growth from brown bears, and it is the first report of ASCs spontaneously forming extracellular matrix characteristic of bone and cartilage in the absence of specific inducers. These findings could have implications for the use of hibernating brown bears as a model to study disuse osteoporosis.
机译:在巢穴中,尽管几乎没有体育锻炼,但冬眠的棕熊不会出现组织萎缩或器官损伤。间充质干细胞可能在棕熊的组织修复和再生中起重要作用。我们的目标是确定是否可以从野生斯堪的纳维亚棕熊中回收脂肪组织来源的干细胞(ASC),并表征其分化潜能。在4月中旬离开巢穴后,将野生棕熊固定7至10天,然后进行了脂肪组织活检。从6头熊中回收了ASC,并证明它们能够在单层培养中进行成脂和成骨,在颗粒培养中进行成软骨。值得注意的是,当在单层培养的标准细胞培养基中生长时,来自一岁鸽的ASCs自发形成被软骨沉积物包围的骨样结节,表明它们分化为成骨和成软骨谱系。随着年龄的增长,这种能力似乎逐渐丧失。这是第一个证明棕熊从干细胞中恢复和生长的研究,这是第一个关于ASC在缺乏特异性诱导剂的情况下自发形成骨和软骨特征性细胞外基质的报道。这些发现可能对冬眠棕熊作为研究废用骨质疏松症的模型有影响。

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