Stowers Institute for Medical Research, Kansas City, Missouri 64110, USA.
Gastroenterology. 2013 Aug;145(2):383-95.e1-21. doi: 10.1053/j.gastro.2013.04.050. Epub 2013 May 2.
BACKGROUND & AIMS: Identification of intestinal stem cells (ISCs) has relied heavily on the use of transgenic reporters in mice, but this approach is limited by mosaic expression patterns and difficult to directly apply to human tissues. We sought to identify reliable surface markers of ISCs and establish a robust functional assay to characterize ISCs from mouse and human tissues. METHODS: We used immunohistochemistry, real-time reverse-transcription polymerase chain reaction, and fluorescence-activated cell sorting (FACS) to analyze intestinal epithelial cells isolated from mouse and human intestinal tissues. We compared different combinations of surface markers among ISCs isolated based on expression of Lgr5-green fluorescent protein. We developed a culture protocol to facilitate the identification of functional ISCs from mice and then tested the assay with human intestinal crypts and putative ISCs. RESULTS: CD44(+)CD24(lo)CD166(+) cells, isolated by FACS from mouse small intestine and colon, expressed high levels of stem cell-associated genes. Transit-amplifying cells and progenitor cells were then excluded based on expression of GRP78 or c-Kit. CD44(+)CD24(lo)CD166(+) GRP78(lo/-) putative stem cells from mouse small intestine included Lgr5-GFP(hi) and Lgr5-GFP(med/lo) cells. Incubation of these cells with the GSK inhibitor CHIR99021 and the E-cadherin stabilizer Thiazovivin resulted in colony formation by 25% to 30% of single-sorted ISCs. CONCLUSIONS: We developed a culture protocol to identify putative ISCs from mouse and human tissues based on cell surface markers. CD44(+)CD24(lo)CD166(+), GRP78(lo/-), and c-Kit(-) facilitated identification of putative stem cells from the mouse small intestine and colon, respectively. CD44(+)CD24(-/lo)CD166(+) also identified putative human ISCs. These findings will facilitate functional studies of mouse and human ISCs.
背景与目的:肠干细胞(ISCs)的鉴定主要依赖于在小鼠中使用转基因报告基因,但这种方法受到嵌合表达模式的限制,并且难以直接应用于人体组织。我们试图鉴定 ISCs 的可靠表面标志物,并建立一种强大的功能测定法来鉴定来自小鼠和人类组织的 ISCs。
方法:我们使用免疫组织化学、实时逆转录聚合酶链反应和荧光激活细胞分选(FACS)分析从小鼠和人肠道组织中分离的肠上皮细胞。我们比较了基于 Lgr5-绿色荧光蛋白表达分离的 ISCs 中不同组合的表面标志物。我们开发了一种培养方案,以促进从小鼠中鉴定功能性 ISCs,然后用人类肠隐窝和假定的 ISCs 测试该测定法。
结果:通过 FACS 从小鼠小肠和结肠中分离的 CD44(+)CD24(lo)CD166(+)细胞表达高水平的干细胞相关基因。然后根据 GRP78 或 c-Kit 的表达排除过渡扩增细胞和祖细胞。来自小鼠小肠的 CD44(+)CD24(lo)CD166(+)GRP78(lo/-)假定干细胞包括 Lgr5-GFP(hi)和 Lgr5-GFP(med/lo)细胞。将这些细胞与 GSK 抑制剂 CHIR99021 和 E-钙粘蛋白稳定剂 Thiazovivin 孵育,导致 25%至 30%的单个分选 ISCs形成集落。
结论:我们开发了一种基于细胞表面标志物鉴定来自小鼠和人类组织的假定 ISCs 的培养方案。CD44(+)CD24(lo)CD166(+)、GRP78(lo/-)和 c-Kit(-)分别有助于从小鼠小肠和结肠中鉴定假定的干细胞。CD44(+)CD24(-/lo)CD166(+)也鉴定了假定的人类 ISCs。这些发现将促进对小鼠和人类 ISCs 的功能研究。
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