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A quantitative assessment of the content of hematopoietic stem cells in mouse and human endosteal-bone marrow: a simple and rapid method for the isolation of mouse central bone marrow

机译:小鼠和人骨内膜骨髓中造血干细胞含量的定量评估:分离小鼠中心骨髓的一种简单而快速的方法

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BackgroundIsolation of bone marrow cells, including hematopoietic stem cells, is a commonly used technique in both the research and clinical settings. A quantitative and qualitative assessment of cell populations isolated from mouse and human bone marrow was undertaken with a focus on the distribution of hematopoietic cells between the central bone marrow (cBM) and endosteal bone marrow (eBM). MethodsTwo approaches to cBM isolation from the hind legs were compared using the C57BL/6J and BALB/cJ strains of laboratory mice. The content of hematopoietic stem cells in eBM was compared to cBM from mice and human fetal bone marrow using flow cytometry. Enzymatic digestion was used to isolate eBM and its effects on antigen expression was evaluated using flow cytometry. Humanized immunodeficient mice were used to evaluate the engraftment of human precursors in the cBM and eBM and the effects of in vivo maturation on the fetal stem cell phenotype were determined. ResultsThe two methods of mouse cBM isolation yielded similar numbers of cells from the femur, but the faster single-cut method recovered more cells from the tibia. Isolation of eBM increased the yield of mouse and human stem cells. Enzymatic digestion used to isolate eBM did, however, have a detrimental effect on detecting the expression of the human HSC-antigens CD4, CD90 and CD93, whereas CD34, CD38, CD133 and HLA-DR were unaffected. Human fetal HSCs were capable of engrafting the eBM of immunodeficient mice and their pattern of CD13, CD33 and HLA-DR expression partially changed to an adult pattern of expression about 1?year after transplantation. ConclusionsA simple, rapid and efficient method for the isolation of cBM from the femora and tibiae of mice is detailed. Harvest of tibial cBM yielded about half as many cells as from the femora, representing 6.4?% and 13?%, respectively, of the total cBM of a mouse based on our analysis and a review of the literature. HSC populations were enriched within the eBM and the yield of HSCs from the mouse and human long bones was increased notably by harvest of eBM.
机译:背景技术分离包括造血干细胞在内的骨髓细胞是研究和临床环境中常用的技术。对小鼠和人类骨髓中分离的细胞群进行了定量和定性评估,重点是造血细胞在中央骨髓(cBM)和骨内膜骨髓(eBM)之间的分布。方法比较了C57BL / 6J和BALB / cJ实验室小鼠从后腿分离cBM的两种方法。使用流式细胞术比较了eBM中造血干细胞的含量与小鼠和人胎儿骨髓中cBM的含量。使用酶消化分离eBM,并使用流式细胞仪评估其对抗原表达的影响。使用人源化免疫缺陷小鼠评估人前体在cBM和eBM中的植入,并确定体内成熟对胎儿干细胞表型的影响。结果两种小鼠cBM分离方法均能从股骨中获得相似数量的细胞,但较快的单切口法可从胫骨中回收更多细胞。分离eBM可提高小鼠和人类干细胞的产量。然而,用于分离eBM的酶消化确实对检测人HSC抗原CD4,CD90和CD93的表达具有有害作用,而CD34,CD38,CD133和HLA-DR则不受影响。人类胎儿HSC能够移植免疫缺陷小鼠的eBM,并且它们的CD13,CD33和HLA-DR表达模式在移植后约1年后部分改变为成年表达模式。结论详述了一种简单,快速,有效的从小鼠股骨和胫骨中分离cBM的方法。根据我们的分析和文献综述,收获胫骨cBM所产生的细胞大约是股骨的一半,分别占小鼠总cBM的6.4%和13%。 HSC群体在eBM内富集,并且通过收获eBM显着提高了小鼠和人长骨的HSC产量。

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