Bertoncello I, Hodgson G S, Bradley T R
Research Laboratories, Peter MacCallum Cancer Institute, Melbourne, Victoria, Australia.
Exp Hematol. 1988 May;16(4):245-9.
Marrow obtained from mice (referred to as [X + BM] mice) 3 months after gamma-irradiation (9 Gy) and bone marrow inoculation (0.1 femur equivalents) showed a reduced capacity to reconstitute hemopoiesis of irradiated mice and an increased sensitivity to 5-fluorouracil. Sorting of marrow from (X + BM) mice on the basis of low angle and 90 degrees scatter, and low rhodamine 123 fluorescence, showed that the set of cells that in normal mice is enriched for cells efficient at hemopoietic reconstitution manifested the greatest reduction in hemopoietic reconstituting ability. In spite of this reduction this fraction contained as many 13-day spleen colony-forming units (CFU-S13) and high proliferative potential colony-forming cells (HPP-CFC) as the equivalent fraction from normal littermate mice. This could be explained by postulating that neither CFU-S13 nor HPP-CFC are responsible for hemopoietic reconstitution, but that this is dependent on an earlier, pre-CFU-S13 cell. Alternatively only a subset of either CFU-S13 or HPP-CFC is responsible for long-term hemopoietic reconstitution after lethal irradiation. It would appear that at present there is no adequate method of predicting the hemopoietic reconstituting ability of a given marrow, other than to test it by injection into lethally irradiated hosts.
在γ射线照射(9 Gy)和骨髓接种(0.1个股骨等效量)3个月后从小鼠(称为[X + BM]小鼠)获得的骨髓,显示出重建受照射小鼠造血功能的能力降低,并且对5-氟尿嘧啶的敏感性增加。根据低角度和90度散射以及罗丹明123低荧光对(X + BM)小鼠的骨髓进行分选,结果表明,在正常小鼠中富含高效造血重建细胞的细胞群,其造血重建能力下降最为明显。尽管有这种下降,但该部分所含的13天脾集落形成单位(CFU-S13)和高增殖潜能集落形成细胞(HPP-CFC)与正常同窝小鼠的等效部分一样多。这可以通过假设CFU-S13和HPP-CFC都不负责造血重建来解释,而是依赖于更早的、CFU-S13前体细胞。或者,只有CFU-S13或HPP-CFC的一个子集负责致死性照射后的长期造血重建。目前看来,除了通过注射到致死性照射的宿主中来测试外,没有足够的方法来预测给定骨髓的造血重建能力。