首页> 外文期刊>Stem Cells >A simple, one-step clonal assay allows the sequential detection of committed (CFU-GM-like) progenitors and several subsets of primitive (HPP-CFC) murine progenitors.
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A simple, one-step clonal assay allows the sequential detection of committed (CFU-GM-like) progenitors and several subsets of primitive (HPP-CFC) murine progenitors.

机译:一个简单的一步克隆试验可以连续检测定型(CFU-GM样)祖细胞和原始(HPP-CFC)鼠祖细胞的几个子集。

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Murine bone marrow (BM) cells were cultured in semisolid medium containing interleukin 3 (IL-3) and high doses of G-CSF. Colonies were counted twice, at day 7 and day 14, and the number of granulocyte/macrophage colony-forming units (CFU-GM) accurately estimated by the subtraction of day-14 from day-7 colonies, based on the principle that colonies detectable at day 7 and persisting beyond day 14 are generated by significantly more immature progenitors. The frequency of colonies relative to their size was determined and used to define subsets of high proliferative potential colony-forming cells (HPP-CFC). Two main groups of HPP-CFC were considered: those generating colonies of 0.6-1.8 mm of diameter or larger than 1.8 mm. The characterization of these groups showed that they correspond to different functional subsets of HPP-CFC. The replating ability of colonies was estimated. The percentage of clonogenic progenitors in the S phase of cell cycle was measured by cytosine arabinoside suicide assay. The sensitivity of colonies to 5-fluorouracil (5-FU) in vitro was determined and their survival after an in vivo treatment with 5-FU compared with that of colony-forming units in spleen (CFU-S). This technique allowed identification of: A) CFU-GM; B) relatively mature HPP-CFC, probably corresponding to CFU-S day12; C) more primitive HPP-CFC, relatively resistant to 5-FU in vivo and closely corresponding to CFU-S day 14, and D) very primitive HPP-CFC, resistant to 5-FU in vitro. This simple, rapid, and versatile method allows the detection of a broad range of hematopoietic progenitors in murine BM, from committed progenitors to largely quiescent, primitive stem cells, as well as the evaluation of the progenitors' self-renewal and proliferative potential.
机译:在含有白介素3(IL-3)和高剂量G-CSF的半固体培养基中培养鼠骨髓(BM)细胞。在第7天和第14天对菌落计数两次,并根据可检测到的菌落原理从第7天的菌落中减去14天来准确估算出粒细胞/巨噬细胞菌落形成单位(CFU-GM)的数量明显更多的未成熟祖细胞在第7天持续到第14天并持续超过14天。确定菌落相对于其大小的频率,并用于定义高增殖潜能菌落形成细胞(HPP-CFC)的子集。考虑了HPP-CFC的两个主要组:产生直径0.6-1.8 mm或大于1.8 mm的菌落的菌落。这些组的特征表明它们对应于HPP-CFC的不同功能子集。估计菌落的重铺能力。通过胞嘧啶阿拉伯糖苷自杀测定法测定细胞周期S期中克隆形成祖细胞的百分比。确定了菌落对5-氟尿嘧啶(5-FU)的体外敏感性,并与脾脏中菌落形成单位(CFU-S)相比,经5-FU体内处理后其存活率。该技术允许鉴定:A)CFU-GM; B)相对成熟的HPP-CFC,可能对应于CFU-S第12天; C)更原始的HPP-CFC,在体内对5-FU有相对抗性,与CFU-S第14天相对应; D)非常原始的HPP-CFC,在体外对5-FU有抗性。这种简单,快速且通用的方法可检测出小鼠BM中的各种造血祖细胞,从定型祖细胞到大部分静止的原始干细胞,以及评估祖细胞的自我更新和增殖潜能。

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