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首页> 外文期刊>The international journal of biochemistry and cell biology >Stem cell factor/c-Kit interactions regulate human islet-epithelial cluster proliferation and differentiation.
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Stem cell factor/c-Kit interactions regulate human islet-epithelial cluster proliferation and differentiation.

机译:干细胞因子/ c-Kit相互作用调节人类胰岛-上皮细胞团的增殖和分化。

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Stem cell factor (SCF), a progenitor cell growth factor, binds to and activates the c-Kit receptor tyrosine kinase, which is critical for early stem cell differentiation in haematopoiesis and gametogenesis. Nothing is known regarding these interactions during islet development in the human fetal pancreas. The present study was to investigate whether an increase in c-Kit receptor activity in isolated human fetal islet-epithelial clusters, by giving exogenous SCF, would promote beta-cell development. In the intact fetal pancreas, SCF and c-Kit were observed co-localizing with cytokeratin 19 in both ductal and newly forming islet cells. Islet cells isolated from 14 to 16 weeks fetal pancreata were cultured with SCF (50 ng/ml) or vehicle for 48 h. We observed an increase in the number of c-Kit-, pancreatic and duodenal homeobox gene 1- (PDX-1-), insulin- and glucagon-expressing cells in the SCF-treated group (PDX-1 and insulin, p < 0.05). PDX-1 and c-Kit mRNA levels were also up-regulated in the SCF group (PDX-1, p < 0.05), with no change in preproinsulin or proglucagon gene expression. Co-localization of insulin with PDX-1 or c-Kit was observed frequently in SCF-treated cultures. A significantly (p < 0.05) greater proliferative capacity of islet-epithelial clusters was found in the SCF group in parallel with increased (p < 0.02) phosphorylation of Akt in a phosphatidylinositol-3 kinase (PI3K)-dependent manner. Our results demonstrate that SCF/c-Kit interactions are likely to be involved in mediating islet cell differentiation and proliferation during human fetal pancreatic development, and that phosphorylated Akt may have a role downstream of SCF/c-Kit signaling.
机译:干细胞因子(SCF)是一种祖细胞生长因子,与c-Kit受体酪氨酸激酶结合并激活该酪氨酸激酶,这对造血和配子发生中的早期干细胞分化至关重要。关于人类胎儿胰腺中胰岛发育过程中的这些相互作用,一无所知。本研究旨在研究通过给予外源性SCF,在孤立的人类胎儿胰岛-上皮细胞簇中增加c-Kit受体的活性是否会促进β细胞的发育。在完整的胎儿胰腺中,在导管和新形成的胰岛细胞中均观察到SCF和c-Kit与细胞角蛋白19共定位。用SCF(50 ng / ml)或溶媒培养从14至16周胎儿胰腺分离出的胰岛细胞48小时。我们观察到,在SCF治疗组(PDX-1和胰岛素,c-Kit,胰腺和十二指肠同源盒基因1-(PDX-1-),表达胰岛素和胰高血糖素的细胞中,p <0.05 )。 SCF组中PDX-1和c-Kit mRNA水平也上调(PDX-1,p <0.05),胰岛素原前或胰高血糖素原基因的表达没有变化。在SCF处理的培养物中经常观察到胰岛素与PDX-1或c-Kit的共定位。在SCF组中发现胰岛上皮细胞簇的增殖能力显着增强(p <0.05),同时以磷脂酰肌醇3激酶(PI3K)依赖性的方式使Akt磷酸化增加(p <0.02)。我们的结果表明,SCF / c-Kit相互作用可能参与人类胎儿胰腺发育过程中介导的胰岛细胞分化和增殖,并且磷酸化的Akt可能在SCF / c-Kit信号传导下游起作用。

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