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首页> 外文期刊>STEM CELLS >Induction of Differentiation of Embryonic Stem Cells into Insulin-Secreting Cells by Fetal Soluble Factors
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Induction of Differentiation of Embryonic Stem Cells into Insulin-Secreting Cells by Fetal Soluble Factors

机译:胎儿可溶性因子诱导胚胎干细胞向胰岛素分泌细胞的分化

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Cell signals produced during pancreas embryogenesis regulate pancreatic differentiation. We show that the developing pancreas releases soluble factors responsible for in vitro endocrine pancreatic differentiation from embryonic stem cells (ESCs). A mouse D3 ESC line was transfected with a human insulin promoter/geo/phosphoglycerate kinase-hygromycin-resistant construct. To direct differentiation, cells were cultured for 7 days to form embryoid bodies and then plated for an additional 7 days. During this 14-day period, besides eliminating leukemia inhibitory factor, cells were cultured in low serum concentration with the addition of conditioned media from embryonic day-16.5 pancreatic buds. Islet cell differentiation was studied by the following: (a) X-gal staining after neomycin selection, (b) BrdU (bro-modeoxyuridine) studies, (c) simple and double immunohistochemistry for insulin, C-peptide, and glucose transporter 2 (Glut-2), (d) reverse transcription-polymerase chain reaction for insulin and pancreas duodenum homeobox 1 (PDX-1), (e) insulin and C-peptide content and secretion assays, (f) intraperitoneal glucose tolerance test, (g) electrophysiology (patch-clamp studies in inside-out configuration), and (h) transplantation of differentiated cells under the kidney capsule of streptozotocin-diabetic mice. The differentiated ESCs showed the following: changes in the mRNA levels of insulin and PDX-1; coexpression of insulin, C-peptide, and Glut-2; glucose and tolbutamide-dependent insulin and C-peptide release; K-channel activity regulated by ATP; and normalization of blood glucose levels after transplantation into diabetic mice and hyperglycemia after graft removal. In this study, we establish a battery of techniques that could be used together to properly characterize islet cell differentiation. Moreover, identification of factors released by the developing pancreas may be instrumental in engineering cells from stem cells.
机译:胰腺胚胎发生过程中产生的细胞信号调节胰腺分化。我们显示发育中的胰腺释放出可溶性因子,负责从胚胎干细胞(ESC)的体外内分泌胰腺分化。用人胰岛素启动子/ geo /磷酸甘油酸激酶-潮霉素抗性构建体转染小鼠D3 ESC系。为了指导分化,将细胞培养7天以形成胚状体,然后再铺板7天。在这14天中,除了消除白血病抑制因子外,还以低血清浓度培养细胞,并添加了来自第16.5天胚胎胰腺芽的条件培养基。通过以下方法研究胰岛细胞的分化:(a)选择新霉素后进行X-gal染色;(b)BrdU(溴-脱氧尿苷)研究;(c)胰岛素,C肽和葡萄糖转运蛋白2的简单和双重免疫组织化学( Glut-2),(d)胰岛素和胰腺十二指肠同源盒1(PDX-1)的逆转录聚合酶链反应,(e)胰岛素和C肽含量及分泌测定,(f)腹膜内葡萄糖耐量试验,(g )电生理学(从里到外配置的膜片钳研究),(h)链脲佐菌素-糖尿病小鼠肾囊下分化细胞的移植。分化的ESC显示以下:胰岛素和PDX-1的mRNA水平变化;胰岛素,C肽和Glut-2的共表达;葡萄糖和甲苯磺丁酰胺依赖性胰岛素和C肽释放; ATP调节的K通道活性;移植到糖尿病小鼠中后血糖水平正常化,移植物去除后血糖升高。在这项研究中,我们建立了一系列技术,可以一起使用以正确表征胰岛细胞的分化。而且,鉴定发育中的胰腺释放的因子可能在干细胞的工程细胞中起作用。

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