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首页> 外文期刊>Stem Cell Research & Therapy >Adult muscle-derived stem cells engraft and differentiate into insulin-expressing cells in pancreatic islets of diabetic mice
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Adult muscle-derived stem cells engraft and differentiate into insulin-expressing cells in pancreatic islets of diabetic mice

机译:成年肌肉来源的干细胞在糖尿病小鼠的胰岛中植入并分化为表达胰岛素的细胞

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Background Pancreatic beta cells are unique effectors in the control of glucose homeostasis and their deficiency results in impaired insulin production leading to severe diabetic diseases. Here, we investigated the potential of a population of nonadherent muscle-derived stem cells (MDSC) from adult mouse muscle to differentiate in vitro into beta cells when transplanted as undifferentiated stem cells in vivo to compensate for beta-cell deficiency. Results In vitro, cultured MDSC spontaneously differentiated into insulin-expressing islet-like cell clusters as revealed using MDSC from transgenic mice expressing GFP or mCherry under the control of an insulin promoter. Differentiated clusters of beta-like cells co-expressed insulin with the transcription factors Pdx1, Nkx2.2, Nkx6.1, and MafA, and secreted significant levels of insulin in response to glucose challenges. In vivo, undifferentiated MDSC injected into streptozotocin (STZ)-treated mice engrafted within 48?h specifically to damaged pancreatic islets and were shown to differentiate and express insulin 10–12 days after injection. In addition, injection of MDSC into hyperglycemic diabetic mice reduced their blood glucose levels for 2–4 weeks. Conclusion These data show that MDSC are capable of differentiating into mature pancreatic beta islet-like cells, not only upon culture in vitro, but also in vivo after systemic injection in STZ-induced diabetic mouse models. Being nonteratogenic, MDSC can be used directly by systemic injection, and this potential reveals a promising alternative avenue in stem cell-based treatment of beta-cell deficiencies.
机译:背景技术胰岛β细胞是控制葡萄糖稳态的独特效应子,其缺乏会导致胰岛素生产受损,从而导致严重的糖尿病。在这里,我们研究了成年小鼠肌肉中非粘附性肌肉衍生干细胞(MDSC)群体在体内作为未分化干细胞移植以补偿β细胞缺陷时体外分化成β细胞的潜力。结果在体外,培养的MDSC自发分化为表达胰岛素的胰岛样细胞簇,如使用来自在胰岛素启动子控制下表达GFP或mCherry的转基因小鼠的MDSC所揭示的。 β样细胞的分化簇与转录因子Pdx1,Nkx2.2,Nkx6.1和MafA共表达胰岛素,并响应葡萄糖激发而分泌大量胰岛素。在体内,将未分化的MDSC注射到经链脲佐菌素(STZ)处理的小鼠中,在48h内移植到受损的胰岛,并在注射后10-12天分化并表达胰岛素。此外,向高血糖糖尿病小鼠注射MDSC可降低其血糖水平2-4周。结论这些数据表明,MDSC能够分化为成熟的胰岛β胰岛样细胞,不仅在体外培养时而且在STZ诱导的糖尿病小鼠模型中全身注射后都能在体内分化。 MDSC具有非致畸性,可以直接通过全身注射使用,这种潜力揭示了在基于干细胞的β细胞缺陷治疗中有希望的替代途径。

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