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首页> 外文期刊>Stem Cell Research & Therapy >Adult human pancreas-derived cells expressing stage-specific embryonic antigen 4 differentiate into Sox9-expressing and Ngn3-expressing pancreatic ducts in vivo
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Adult human pancreas-derived cells expressing stage-specific embryonic antigen 4 differentiate into Sox9-expressing and Ngn3-expressing pancreatic ducts in vivo

机译:表达阶段特异性胚胎抗原4的成年人胰腺衍生细胞分化为表达SOX9和NGN3表达的胰管

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Background Tissue-specific stem/progenitor cells are found in various adult tissues and may have the capacity for lineage-specific differentiation, facilitating applications in autologous transplantation. Stage-specific embryonic antigen 4 (SSEA-4), an early embryonic glycolipid antigen, is expressed in cells derived from adult human pancreas exocrine tissue. Here, we examined the characteristics and lineage-specific differentiation capacity of SSEA-4+ cells. Methods Human adult partial pancreas tissues were obtained from different donors and cultured in vitro. SSEA-4+ and CA19-9+ cells were isolated from adult human pancreas exocrine cells using magnetic-activated cell sorting, and gene expression was validated by quantitative polymerase chain reaction. To confirm in-vivo differentiation, SSEA-4+ and CA19-9+ cells were transplanted into the dorsal subcutaneous region of mice. Finally, morphological features of differentiated areas were confirmed by immunostaining and morphometric analysis. Results SSEA-4-expressing cells were detected in isolated pancreas exocrine cells from adult humans. These SSEA-4+ cells exhibited coexpression of CA19-9, a marker of pancreatic duct cells, but not amylase expression, as shown by immunostaining and flow cytometry. SSEA-4+ cells exhibited higher relative expression of Oct4 , Nanog , Klf4 , Sox2 , and c-Myc mRNAs than CA19-9+ cells. Pancreatic intralobular ducts (PIDs) were generated from SSEA-4+ or CA19-9+ cells in vivo at 5 weeks after transplantation. However, newly formed PIDs from CA19-9+ cells were less abundant and showed an incomplete PID morphology. In contrast, newly formed PIDs from SSEA-4+ cells were abundant in the transplanted area and showed a crowded morphology, typical of PIDs. Sox9 and Ngn3, key transcription factors associated with pancreatic development and regeneration, were expressed in PIDs from SSEA-4+ cells. Conclusions SSEA-4-expressing cells in the adult human pancreas may have the potential for regeneration of the pancreas and may be used as a source of stem/progenitor cells for pancreatic cell lineage-specific differentiation.
机译:背景组织特异性茎/祖细胞被发现在各种成人组织中,并且可以具有谱系特异性分化的能力,促进自体移植中的应用。特异性胚胎抗原4(SSEA-4)是早期胚胎糖脂抗原,在来自成人人胰腺外分泌组织的细胞中表达。在这里,我们检查了SSEA-4 + 细胞的特征和谱系特异性分化容量。方法从不同供体中获得人类成人部分胰腺组织并在体外培养。使用磁性活性细胞分选从成年人胰腺外分泌细胞中分离出SSEA-4 + 和Ca19-9 + 细胞,并通过定量聚合酶链反应验证基因表达。为了确认体内分化,将SSEA-4 + 和Ca19-9 + 细胞移植到小鼠的背水压区域中。最后,通过免疫染色和形态学分析证实了分化区域的形态学特征。结果在来自成年人的分离的胰腺外分泌细胞中检测到表达SSEA-4的细胞。这些SSEA-4 + / sup>细胞表现出Ca19-9的共表达,胰管细胞的标记,但不是淀粉酶表达,如通过免疫染色和流式细胞术所示。 SSEA-4 + 细胞表现出OCT4,NANOG,KLF4,SOX2和C-MYC MRNA的更高相对表达,而不是CA19-9 + / sup>细胞。在移植后5周,在体内从SSEA-4 + 或Ca19-9 + 细胞产生胰腺内管道(pID)。然而,来自Ca19-9 + 细胞的新形成的pID较小,并显示出不完全的PID形态。相反,来自SSEA-4 + 细胞的新形成的PID在移植区域中丰富,并且显示出一种拥挤的形态,典型的PID。 SOX9和NGN3,与胰腺发育和再生相关的关键转录因子,在SSEA-4 + 细胞的PID中表达。结论成年人胰腺中表达的SSEA-4表达细胞可能具有胰腺再生的可能性,并且可以用作胰腺细胞谱系特异性分化的茎/祖细胞的源极。

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