Zuckerman K S, Prince C W, Ribadeneira M
Blood. 1986 Dec;68(6):1201-6.
Sl/Sld mice have a defective hemopoietic microenvironment. It has been assumed, based upon previous studies, that the primary abnormality in these mice is simply lack of a necessary supportive or inductive material within the hemopoietic stroma. We used in vitro long-term bone marrow cultures to characterize further the nature of the hemopoietic microenvironmental defect in Sl/Sld mice. Sl/Sld mouse bone marrow cells consistently produced less than 10% of the total hemopoietic cells and multipotent and unipotent hemopoietic progenitor cells produced in cultures of marrow from normal, congenic +/+ mice. If fresh Sl/Sld and +/+ marrow cells were mixed prior to establishing long-term marrow cultures, there was a direct correlation between number of Sl/Sld cells added and degree of inhibition of +/+ hemopoiesis. A pre-established, confluent Sl/Sld adherent stromal layer inhibited hemopoiesis by fresh +/+ marrow cells by nearly 70%, as compared with dishes with irradiated +/+ or no stroma. This inhibitory effect was abrogated by irradiation of the Sl/Sld stroma prior to addition of the fresh +/+ marrow cells. Similarly, unirradiated, but not 9 to 200 Gy irradiated Sl/Sld stroma inhibited proliferation of the factor-dependent FDC-P1 hemopoietic progenitor cell line. Thus, the Sl/Sld hemopoietic microenvironment actively inhibits hemopoiesis in vitro, and this inhibition can be at least partially eliminated by irradiation of the Sl/Sld stroma.
Sl/Sld小鼠存在造血微环境缺陷。基于之前的研究推测,这些小鼠的主要异常仅仅是造血基质中缺乏必要的支持或诱导物质。我们利用体外长期骨髓培养进一步表征Sl/Sld小鼠造血微环境缺陷的本质。与正常同基因+/+小鼠骨髓培养物中产生的造血细胞总数以及多能和单能造血祖细胞相比,Sl/Sld小鼠骨髓细胞产生的数量始终不到10%。如果在建立长期骨髓培养之前将新鲜的Sl/Sld和+/+骨髓细胞混合,添加的Sl/Sld细胞数量与+/+造血抑制程度之间存在直接相关性。与经辐照的+/+或无基质的培养皿相比,预先建立的汇合的Sl/Sld贴壁基质层对新鲜的+/+骨髓细胞的造血抑制作用接近70%。在添加新鲜的+/+骨髓细胞之前对Sl/Sld基质进行辐照可消除这种抑制作用。同样,未辐照但经9至200 Gy辐照的Sl/Sld基质均不抑制因子依赖性FDC-P1造血祖细胞系的增殖。因此,Sl/Sld造血微环境在体外可积极抑制造血,并且这种抑制作用至少可通过对Sl/Sld基质进行辐照而部分消除。