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间充质干细胞中β细胞素的过表达可诱导体外胰岛素分泌,并改善链脲佐菌素诱导的大鼠高血糖症。

Betacellulin overexpression in mesenchymal stem cells induces insulin secretion in vitro and ameliorates streptozotocin-induced hyperglycemia in rats.

机构信息

Laboratorio de Embriologia e Diferenciagao Celular, Centro de Pesquisas UFRGS-HCPA, Porto Alegre, Brazil.

出版信息

Stem Cells Dev. 2011 Feb;20(2):223-32. doi: 10.1089/scd.2009.0490. Epub 2010 Oct 26.

DOI:10.1089/scd.2009.0490
PMID:20836700
Abstract

Betacellulin (BTC), a ligand of the epidermal growth factor receptor, has been shown to promote growth and differentiation of pancreatic β-cells and to improve glucose metabolism in experimental diabetic rodent models. Mesenchymal stem cells (MSCs) have been already proved to be multipotent. Recent work has attributed to rat and human MSCs the potential to differentiate into insulin-secreting cells. Our goal was to transfect rat MSCs with a plasmid containing BTC cDNA to guide MSC differentiation into insulin-producing cells. Prior to induction of cell MSC transfection, MSCs were characterized by flow cytometry and the ability to in vitro differentiate into mesoderm cell types was evaluated. After rat MSC characterization, these cells were electroporated with a plasmid containing BTC cDNA. Transfected cells were cultivated in Dulbecco's modified Eagle medium high glucose (H-DMEM) with 10 mM nicotinamide. Then, the capability of MSC-BTC to produce insulin in vitro and in vivo was evaluated. It was possible to demonstrate by radioimmunoassay analysis that 10(4) MSC-BTC cells produced up to 0.4 ng/mL of insulin, whereas MSCs transfected with the empty vector (negative control) produced no detectable insulin levels. Moreover, MSC-BTC were positive for insulin in immunohistochemistry assay. In parallel, the expression of pancreatic marker genes was demonstrated by molecular analysis of MSC-BTC. Further, when MSC-BTC were transplanted to streptozotocin diabetic rats, BTC-transfected cells ameliorated hyperglycemia from over 500 to about 200 mg/dL at 35 days post-cell transplantation. In this way, our results clearly demonstrate that BTC overabundance enhances glucose-induced insulin secretion in MSCs in vitro as well as in vivo.

摘要

β 细胞素(BTC)是表皮生长因子受体的配体,已被证明可促进胰腺β 细胞的生长和分化,并改善实验性糖尿病啮齿动物模型中的葡萄糖代谢。间充质干细胞(MSCs)已经被证明具有多能性。最近的工作已经将大鼠和人 MSCs 分化为胰岛素分泌细胞的潜力归因于。我们的目标是用含有 BTC cDNA 的质粒转染大鼠 MSCs,以指导 MSC 分化为胰岛素分泌细胞。在诱导 MSC 转染之前,通过流式细胞术对 MSCs 进行了特征鉴定,并评估了其在体外分化为中胚层细胞类型的能力。在大鼠 MSC 特征鉴定后,将这些细胞用电穿孔法转染含有 BTC cDNA 的质粒。转染后的细胞在含有 10 mM 烟酰胺的 Dulbecco 改良 Eagle 培养基高葡萄糖(H-DMEM)中培养。然后,评估 MSC-BTC 在体外和体内产生胰岛素的能力。通过放射免疫分析可以证明,10(4)个 MSC-BTC 细胞可产生多达 0.4ng/mL 的胰岛素,而转染空载体(阴性对照)的 MSC 则未检测到可检测水平的胰岛素。此外,MSC-BTC 在免疫组织化学分析中呈胰岛素阳性。平行地,通过对 MSC-BTC 的分子分析证明了胰腺标记基因的表达。此外,当 MSC-BTC 被移植到链脲佐菌素糖尿病大鼠中时,BTC 转染的细胞可使高血糖从超过 500 降低到约 200mg/dL,在细胞移植后 35 天。通过这种方式,我们的结果清楚地表明,BTC 丰度增加可增强 MSC 在体外和体内葡萄糖诱导的胰岛素分泌。

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