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Comparison of upstream regulators in human ex vivo cultured cornea limbal epithelial stem cells and differentiated corneal epithelial cells.

机译:人离体培养的角膜缘上皮干细胞和分化的角膜上皮细胞中上游调节剂的比较。

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摘要

BACKGROUND: The surface of the human eye is covered by corneal epithelial cells (CECs) which regenerate from a small population of limbal epithelial stem cells (LESCs). Cell therapy with LESCs is a non-penetrating treatment for preventing blindness due to LESC deficiency or dysfunction. Our aim was to identify new putative molecular markers and upstream regulators in the LESCs and associated molecular pathways. RESULTS: Genome-wide microarray transcriptional profiling was used to compare LESCs to differentiated human CECs. Ingenuity-based pathway analysis was applied to identify upstream regulators and pathways specific to LESCs. ELISA and flow cytometry were used to measure secreted and surface expressed proteins, respectively. More than 2 fold increase and decrease in expression could be found in 1830 genes between the two cell types. A number of molecules functioning in cellular movement (381), proliferation (567), development (552), death and survival (520), and cell-to-cell signaling (290) were detected having top biological functions in LESCs and several of these were confirmed by flow cytometric surface protein analysis. Custom-selected gene groups related to stemness, differentiation, cell adhesion, cytokines and growth factors as well as angiogenesis could be analyzed. The results show that LESCs play a key role not only in epithelial differentiation and tissue repair, but also in controlling angiogenesis and extracellular matrix integrity. Some pro-inflammatory cytokines were found to be important in stemness-, differentiation- and angiogenesis-related biological functions: IL-6 and IL-8 participated in most of these biological pathways as validated by their secretion from LESC cultures. CONCLUSIONS: The gene and molecular pathways may provide a more specific understanding of the signaling molecules associated with LESCs, therefore, help better identify and use these cells in the treatment of ocular surface diseases.
机译:背景:人眼的表面被角膜上皮细胞(CEC)覆盖,这些角膜上皮细胞由少量的角膜缘上皮干细胞(LESC)再生。 LESCs的细胞疗法是一种非穿透性疗法,可防止因LESC缺乏或功能障碍导致的失明。我们的目的是在LESC和相关的分子途径中确定新的假定分子标记和上游调节剂。结果:全基因组微阵列转录谱用于比较LESCs与分化的人类CECs。基于独创性的途径分析用于鉴定上游调节子和LESC特有的途径。 ELISA和流式细胞仪分别用于测量分泌和表面表达的蛋白质。在两种细胞类型之间的1830个基因中发现表达增加和减少2倍以上。在LESCs中检测到许多在细胞运动(381),增殖(567),发育(552),死亡和存活(520)和细胞间信号转导(290)中起作用的分子,这些分子具有最高的生物学功能。通过流式细胞仪表面蛋白分析证实了这些。可以分析与干性,分化,细胞粘附,细胞因子和生长因子以及血管生成相关的自选基因组。结果表明,LESC不仅在上皮分化和组织修复中起着关键作用,而且在控制血管生成和细胞外基质完整性方面也起着关键作用。已发现某些促炎细胞因子在与干性,分化和血管生成相关的生物学功能中很重要:IL-6和IL-8参与了大多数这些生物学途径,并通过LESC培养物的分泌得到证实。结论:基因和分子途径可能提供与LESCs相关的信号分子的更具体的了解,因此,有助于更好地识别和使用这些细胞治疗眼表疾病。

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