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Isolation, selection and culture methods to enhance clonogenicity of mouse bone marrow derived mesenchymal stromal cell precursors

机译:增强小鼠骨髓间充质基质细胞前体克隆形成能力的分离,选择和培养方法

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Conventionally cultured mouse bone marrow mesenchymal stromal cells (mBM-MSC) are a heterogeneous population that often initially contain contaminating haematopoietic cells. Variability in isolation methods, culture protocols and the lack of specific mBM MSC markers might explain this heterogeneity. The aim of this study is to optimise the isolation, culture conditions and selection of mBM-MSC. Mouse BM-MSCs were isolated from crushed long bones (cBM) or flushed bone marrow (fBM) from 6–8 week old C57Bl/6 mice. These subpopulations were analysed by flow cytometry using commonly used mBM-MSC cell surface marker, e.g. Sca-1, CD29 and CD44. Cells were cultured and expanded in vitro in hypoxic conditions of either 2?% or 5?% oxygen. Cell sorting and qRT-PCR was used to determine transcript levels of stem cell and lineage related genes in individual subpopulations. During early passaging not only do contaminating haematopoietic cells disappear, but there is a change in the phenotype of mBM-MSC affecting particularly CD44 and Sca-1 expression. By fluorescence activated cell sorting of CD45?/Ter119? mBM stroma based on Sca-1 expression and expansion in hypoxic conditions, we show that Sca-1+ cells had higher CFU-F frequencies and showed enhanced proliferation compared with Sca-1? cells. As evaluated by in vitro assays and qRT-PCR, these cells presented in vitro tri-lineage differentiation along osteocyte, chondrocyte, and adipocyte lineages. Finally, by prospective isolation of Sca-1+PDGFRα+CD90+ cells we have isolated mBM-MSC on a single cell level, achieving a CFU-F frequency of 1/4. Functional investigations demonstrated that these MSC clones inhibited T-lymphocyte proliferation. By positive selection using a combination of antibodies to Sca-1, CD90 and PDGFRα and culturing in hypoxia, we have found a subpopulation of BM cells from C57Bl/6 mice with a CFU-F cloning efficiency of 1/4. To our knowledge these results represent the highest frequencies of mouse MSC cloning from C57Bl/6 mice yet reported.
机译:常规培养的小鼠骨髓间充质基质细胞(mBM-MSC)是异质种群,通常最初包含污染的造血细胞。分离方法的差异,培养方案以及缺乏特定的mBM MSC标记可能解释了这种异质性。这项研究的目的是优化mBM-MSC的分离,培养条件和选择。小鼠BM-MSC是从6-8周龄的C57Bl / 6小鼠的碎长骨(cBM)或潮红的骨髓(fBM)中分离出来的。使用常用的mBM-MSC细胞表面标记物,例如流式细胞仪,通过流式细胞仪分析这些亚群。 Sca-1,CD29和CD44。在氧含量为2%或5%的低氧条件下培养细胞并进行体外扩增。细胞分选和qRT-PCR用于确定单个亚群中干细胞和谱系相关基因的转录水平。在早期传代过程中,不仅污染的造血细胞消失,而且mBM-MSC的表型发生变化,尤其影响CD44和Sca-1表达。通过CD45α/Ter119β的荧光激活细胞分选。基于Sca-1在缺氧条件下的表达和扩增的mBM基质,我们发现Sca-1 +细胞的CFU-F频率高于Sca-1?细胞。通过体外测定和qRT-PCR评估,这些细胞沿骨细胞,软骨细胞和脂肪细胞谱系呈现体外三谱系分化。最后,通过前瞻性分离Sca-1 +PDGFRα+ CD90 +细胞,我们在单个细胞水平上分离了mBM-MSC,实现了1/4的CFU-F频率。功能研究表明,这些MSC克隆抑制T淋巴细胞增殖。通过使用抗Sca-1,CD90和PDGFRα抗体的组合进行阳性选择并在缺氧条件下进行培养,我们发现C57Bl / 6小鼠的BM细胞亚群的CFU-F克隆效率为1/4。据我们所知,这些结果代表了尚未报道的从C57Bl / 6小鼠克隆小鼠MSC的最高频率。

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