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从巨噬细胞炎性蛋白1α+白细胞介素-3补充的“基质非接触”培养物中重新选择的CD34+/CD33-细胞高度富集了长期骨髓培养起始细胞。

CD34+/CD33- cells reselected from macrophage inflammatory protein 1 alpha+interleukin-3--supplemented "stroma-noncontact" cultures are highly enriched for long-term bone marrow culture initiating cells.

作者信息

Verfaillie C M, Miller J S

机构信息

Stem Cell Laboratory, University of Minnesota, Minneapolis.

出版信息

Blood. 1994 Sep 1;84(5):1442-9.

PMID:7520771
Abstract

Human hematopoietic stem cells are thought to express the CD34 stem cell antigen, low numbers of HLA-DR and Thy1 antigens, but no lineage commitment antigens, CD38, or CD45RA antigens. However, fluorescence-activated cell sorted CD34+ subpopulations contain not more than 1% to 5% primitive progenitors capable of initiating and sustaining growth in long-term bone marrow culture initiating cells (LTBMC-ICs). We have recently shown that culture of fresh human marrow CD34+/HLA-DR- cells separated from a stromal layer by a microporous membrane ("stroma-noncontact" culture) results in the maintenance of 40% of LTBMC-ICs. We hypothesized that reselection of CD34+ subpopulations still present after several weeks in stroma-noncontact cultures may result in the selection of cells more highly enriched for human LTBMC-ICs. Fresh marrow CD34+/HLA-DR- cells were cultured for 2 to 3 weeks in stroma-noncontact cultures. Cultured progeny was then sorted on the basis of CD34, HLA-DR, or CD33 antigen expression, and sorted cells evaluated for the presence of LTBMC-ICs by limiting dilution analysis. We show that (1) LTBMC-ICs are four times more frequent in cultured CD34+/HLA-DR- cells (4.6% +/- 1.7%) than in cultured CD34+/HLA-DR- cells (1.3% +/- 0.4%). This suggests that HLA-DR antigen expression may depend on the activation status of primitive cells rather than their lineage commitment. We then sorted cultured cells on the basis of the myeloid commitment antigen, CD33. (2) These studies show that cultured CD34+/CD33- cells contain 4% to 8% LTBMC-ICs, whereas cultured CD34+/CD33+bright cells contain only 0.1% +/- 0.03% LTBMC-ICs. Because LTBMC-ICs are maintained significantly better in stroma-noncontact cultures supplemented with macrophage inflammatory protein 1 alpha (MIP-1 alpha) and interleukin-3 (IL-3) (Verfaillie et al, J Exp Med 179:643, 1994), we evaluated the frequency of LTBMC-ICs in CD34+/CD33- cells present in such cultures. (3) CD34+/CD33- cells present in MIP-1 alpha + IL-3-supplemented cultures contain up to 30% LTBMC-ICs. The increased frequency of LTBMC-ICs in cultured CD34+ subpopulations may be the result of terminal differentiation of less primitive progenitors, loss of cells that fail to respond to the culture conditions or recruitment of quiescent LTBMC-ICs. The capability to select progenitor populations containing up to 30% LTBMC-ICs should prove useful in studies examining the growth requirements, self-renewal, and multilineage differentiation capacity of human hematopoietic stem cells at the single-cell level.

摘要

人们认为人类造血干细胞表达CD34干细胞抗原、少量的HLA - DR和Thy1抗原,但不表达系别定向抗原、CD38或CD45RA抗原。然而,通过荧光激活细胞分选得到的CD34 +亚群中,能够在长期骨髓培养起始细胞(LTBMC - ICs)中启动并维持生长的原始祖细胞不超过1%至5%。我们最近发现,将新鲜的人骨髓CD34 + / HLA - DR -细胞通过微孔膜与基质层分离进行培养(“基质非接触”培养),可使40%的LTBMC - ICs得以维持。我们推测,在基质非接触培养数周后,对仍然存在的CD34 +亚群进行重新分选,可能会筛选出更高度富集人类LTBMC - ICs的细胞。将新鲜骨髓CD34 + / HLA - DR -细胞在基质非接触培养中培养2至3周。然后根据CD34、HLA - DR或CD33抗原表达对培养后的子代进行分选,并通过有限稀释分析评估分选细胞中LTBMC - ICs的存在情况。我们发现:(1)培养后的CD34 + / HLA - DR -细胞中LTBMC - ICs的频率(4.6% ± 1.7%)是培养前CD34 + / HLA - DR -细胞(1.3% ± 0.4%)的四倍。这表明HLA - DR抗原表达可能取决于原始细胞的激活状态而非其系别定向。然后我们根据髓系定向抗原CD33对培养后的细胞进行分选。(2)这些研究表明,培养后的CD34 + / CD33 -细胞含有4%至8%的LTBMC - ICs,而培养后的CD34 + / CD33 +明亮细胞仅含有0.1% ± 0.03%的LTBMC - ICs。由于在补充了巨噬细胞炎性蛋白1α(MIP - 1α)和白细胞介素 - 3(IL - 3)的基质非接触培养中LTBMC - ICs维持得明显更好(Verfaillie等人,《实验医学杂志》179:643,1994),我们评估了此类培养中存在的CD34 + / CD33 -细胞中LTBMC - ICs的频率。(3)在补充了MIP - 1α + IL - 3的培养中存在的CD34 + / CD33 -细胞含有高达30%的LTBMC - ICs。培养后的CD34 +亚群中LTBMC - ICs频率的增加可能是由于不太原始的祖细胞终末分化、对培养条件无反应的细胞丢失或静止LTBMC - ICs的募集。选择含有高达30% LTBMC - ICs的祖细胞群体的能力在研究人类造血干细胞在单细胞水平的生长需求、自我更新和多系分化能力方面应会被证明是有用的。

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