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缺氧在造血干细胞维持中的作用。

The role of hypoxia in the maintenance of hematopoietic stem cells.

作者信息

Cipolleschi M G, Dello Sbarba P, Olivotto M

机构信息

Istituto di Patologia Generale, Università di Firenze, Florence, Italy.

出版信息

Blood. 1993 Oct 1;82(7):2031-7.

PMID:8104535
Abstract

Bone marrow cell liquid cultures were incubated at various oxygen concentrations ranging from 0% to 18% (air). The total number of cells in culture (CT) at the end of a 6-day incubation was found to be directly proportional to the oxygen concentration. As compared with air-incubated controls, cells recovered from severely hypoxic (1% oxygen) day-5 liquid cultures showed (1) the same day-7 colony-formation efficiency in semisolid culture (neutrophilic/monocytic colonies) or in spleen; (2) a higher day-14 spleen colony-formation efficiency; (3) an enhanced radio-protection ability; and (4) an increased marrow repopulation ability, as measured by determining either total cell number in recipient marrow MRAcell, or the capacity of the latter of generating day-7 neutrophilic/monocytic colonies in secondary in vitro assays (MRACFU-NM). Taking into account CT, the absolute numbers of progenitors in culture were also computed. The results showed that, with respect to time 0, incubation in air produced an increase in the number of day-7 CFUs and a decrease in the number of the other progenitors, whereas in hypoxic cultures all types of progenitors decreased. However, as compared with air-incubated controls, all progenitors, except cells sustaining MRACFU-NM, were reduced in hypoxic cultures. The degree of reduction paralleled the position of the progenitor in the hematopoietic hierarchy, being maximum for day-7 CFUs and null for cells sustaining MRACFU-NM, which, in fact, were better preserved in hypoxic cultures.

摘要

将骨髓细胞液体培养物在0%至18%(空气)的不同氧浓度下孵育。在6天孵育结束时,培养物中的细胞总数(CT)被发现与氧浓度成正比。与在空气中孵育的对照相比,从严重缺氧(1%氧气)的第5天液体培养物中回收的细胞显示:(1)在半固体培养(嗜中性/单核细胞集落)或脾脏中第7天的集落形成效率相同;(2)第14天的脾脏集落形成效率更高;(3)放射防护能力增强;(4)骨髓再填充能力增加,这是通过测定受体骨髓中的总细胞数MRAcell或通过二次体外试验(MRACFU-NM)测定后者产生第7天嗜中性/单核细胞集落的能力来衡量的。考虑到CT,还计算了培养物中祖细胞的绝对数量。结果表明,相对于时间0,在空气中孵育会使第7天CFU的数量增加,而其他祖细胞的数量减少,而在缺氧培养物中,所有类型的祖细胞都会减少。然而,与在空气中孵育的对照相比,除了维持MRACFU-NM的细胞外,缺氧培养物中的所有祖细胞都减少了。减少的程度与祖细胞在造血层次中的位置平行,对于第7天的CFU最大,而对于维持MRACFU-NM的细胞则为零,事实上,这些细胞在缺氧培养物中保存得更好。

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