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Purified primitive human hematopoietic progenitor cells with long-term in vitro repopulating capacity adhere selectively to irradiated bone marrow stroma

机译:具有长期体外繁殖能力的纯化原始人类造血祖细胞选择性地粘附于辐照的骨髓基质

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摘要

We enriched bone marrow cells from 10 normal individuals for primitive hematopoietic progenitors using a two-step technique, and examined resultant primitive progenitors for their in vitro long-term repopulating capacity and their ability to adhere to irradiated stroma. Immunomagnetic depletion of mature myeloid and lymphoid progenitors resulted in a lineage-negative (Lin-) cell population. Subsequent dual- color fluorescence activated sorting of cells with low forward and vertical light scatter properties, expressing CD34 antigen (34+) and either bearing (DR+) or lacking (DR-) the HLA-DR antigen, resulted in the selection of Lin-34+ DR+ and Lin-34+ DR- cell populations. When the Lin-34+ DR+ cell fraction was cultured in a short-term methylcellulose assay, we demonstrated a 61-fold enrichment for colony forming cells (CFC) compared with undepleted bone marrow mononuclear cells. In contrast to the Lin-34+ DR+ cells, direct culture of Lin-34+ DR- cells in short-term methylcellulose generated significantly less CFC (p less than or equal to 0.001). We then compared the capacity of Lin-34+ DR+ and Lin-34+ DR- cells to generate sustained hematopoiesis when plated in long-term bone marrow culture (LTBMC). When LTBMC were initiated with plated Lin-34+ DR+ cells, we recovered high numbers of CFC during the first week, but observed a rapid decline in the number of harvested CFC over the following weeks. No CFC could be recovered after week 7. In contrast, LTBMC initiated with plated Lin-34+ DR- cells yielded significantly greater numbers of CFC than LTBMC initiated with plated Lin-34+ DR+ cells (p less than or equal to 0.001), and this was sustained for at least 12 wk of culture. The Lin-34+ DR+ population was only 6.6-fold enriched for primitive progenitors capable of initiating and sustaining hematopoiesis in LTBMC when compared with undepleted bone marrow mononuclear cells, while the Lin-34+ DR- population was 424- fold enriched for such primitive progenitors (p less than or equal to 0.001). Finally, we examined the capacity of both Lin-34+ DR+ and Lin- 34+ DR- populations to adhere to irradiated allogeneic stroma. We used a previously described "panning method" in which cells are plated onto stroma for 2 h, the nonadherent cells removed by extensive washing, and the adherent fraction maintained under conditions favoring LTBMC growth. When stroma was panned with Lin -34+ DR+ cells, 79 +/- 10% of the cells were recovered in the panning effluent. In contrast, when stroma was panned with Lin -34 + DR- cells, significantly fewer (37 +/- 7%) (p less than or equal to 0.001) cells were recovered in the panning effluent. Unlike LTBMC initiated with plated Lin -34 + DR+ cells, virtually no CFC were recovered from LTBMC initiated with panned Lin - 34 + DR+ cells.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:我们使用两步技术富集了来自10个正常个体的原始造血祖细胞的骨髓细胞,并检查了所得原始祖细胞的体外长期繁殖能力以及它们对辐射基质的粘附能力。成熟的髓样和淋巴祖细胞的免疫磁耗竭导致谱系阴性(Lin-)细胞群体。随后具有低前向和垂直光散射特性的细胞的双色荧光激活分选,表达CD34抗原(34+)并带有(DR +)或缺乏(DR-)HLA-DR抗原,导致选择Lin- 34+ DR +和Lin-34 + DR-细胞群。当在短期甲基纤维素测定中培养Lin-34 + DR +细胞组分时,与未耗尽的骨髓单核细胞相比,我们证明了菌落形成细胞(CFC)的61倍富集。与Lin-34 + DR +细胞相反,在短期甲基纤维素中直接培养Lin-34 + DR-细胞产生的CFC明显更少(p小于或等于0.001)。然后,我们比较了在长期骨髓培养(LTBMC)中进行铺板时Lin-34 + DR +和Lin-34 + DR-细胞产生持续造血的能力。当LTBMC用铺好的Lin-34 + DR +细胞启动时,我们在第一周内回收了大量的CFC,但随后几周观察到CFC数量迅速下降。在第7周后无法恢复CFC。相比之下,以铺板的Lin-34 + DR-细胞启动的LTBMC产生的CFC数量明显大于以铺板的Lin-34 + DR +细胞启动的LTBMC(p小于或等于0.001),并持续了至少12周的文化。与未耗尽的骨髓单核细胞相比,Lint-34 + DR-群体的原始祖细胞富集了能够启动和维持造血功能的原始祖细胞的6.6倍,而Lin-34 + DR-群体的原始祖细胞的富集了424倍。祖细胞(p小于或等于0.001)。最后,我们研究了Lin-34 + DR +和Lin-34 + DR-群体对辐照的异基因基质的粘附能力。我们使用了先前描述的“淘选法”,其中将细胞铺在基质上2 h,通过大量洗涤去除非贴壁细胞,并将贴壁部分保持在有利于LTBMC生长的条件下。当用Lin -34+ DR +细胞淘洗基质时,淘洗流出物中回收了79 +/- 10%的细胞。相反,当用Lin -34 + DR-细胞淘洗基质时,淘洗废水中回收的细胞明显减少(37 +/- 7%)(p小于或等于0.001)。与使用铺板的Lin -34 + DR +细胞启动的LTBMC不同,实际上从使用淘选的Lin-34 + DR +细胞启动的LTBMC中没有回收CFC。(摘要截短了400字)

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  • 年度 1990
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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  • 入库时间 2022-08-20 20:37:57

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