Primitive human hematopoietic cells displaying differential efflux of the rhodamine 123 dye have distinct biological activities

被引:66
作者
Uchida, N [1 ]
Combs, J [1 ]
Chen, S [1 ]
Zanjani, E [1 ]
Hoffman, R [1 ]
Tsukamoto, A [1 ]
机构
[1] UNIV NEVADA,DEPT VET AFFAIRS,RENO,NV 89557
关键词
D O I
10.1182/blood.V88.4.1297.bloodjournal8841297
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Human bone marrow (BM) CD34(+) cells were stained with the vital dye, rhodamine 123 (Rh123), and analyzed for their biological properties based on the level of dye retention. Heterogeneous rhodamine staining is seen within the CD34(+) population, and the staining patterns differ dramatically between fetal BM (FBM), adult BM (ABM) and mobilized peripheral blood (MPB). Kinetic analysis of the efflux of Rh123 from ABM CD34(+) cells showed that efflux of Rh123 was most rapid from the most primitive Thy-1(+) subset. The efflux of Rh123 could be inhibited by verapamil, suggesting that rhodamine efflux from primitive hematopoietic cells is primarily due to the P-glycoprotein (P-gp) pump or another intracellular transport system affected by verapamil. When four CD34(+) subpopulations were plated onto SyS1 BM stromal cell cocultures after 1 to 2 weeks, only wells plated with CD34(+)Thy-1(+)Rh123(lo) (low-level Rh123 retention) or CD34(+)Thy-1(+)Rh123(mid) (mid-level Rh123 retention) cells maintained greater than 50% of cells in an uncommitted CD34(+)33(-) stage. CD34(+)Lin(-) (lineage-negative) cells were fractionated based on Rh123 dye staining into Rh123(hi) (high-level Rh123 retention), Rh123(mid), and Rh123(lo) and deposited as single cells into long-term SyS1 BM stromal cell cultures. The Rh123(mid) fraction had immense early proliferative activity in vitro, but lost the ability to form cobblestone areas after 5 to 6 weeks in culture. In contrast, the Rh123(lo) fraction proliferated more slowly but sustained long-term in vitro hematopoiesis as evidenced by continued cobblestone area-forming cells (CAFC) activity for at least 6 weeks. The Rh123(hi) fraction showed a plating efficiency similar to that of the Rh123(lo) or Rh123(mid) fractions but did not extensively proliferate in vitro and did not show evidence of CAFC activity, We predicted from these in vitro results that the Rh123(lo) subset possesses long-term engrafting potential. Indeed, on transplantation into the SCID-hu bone assay, all long-term engrafting potential and multilineage differentiation potential resided within the Rh1231(lo-mid) but not Rh123(hi) subset. Furthermore, human marrow subpopulations derived from chimeric sheep after in utero transplantation with CD34(+)Thy-1(+)Lin(-) cells were reisolated based on Rh123 staining. Again, CD34(+)Lin(-) subsets showing Rh123(lo-mid) had long-term growth in culture, whereas Rh123(hi)CD34(+)Lin(-) cells did not. These results show that, after injection of CD34(+)Thy-1(+)Lin(-) cells into an in utero microenvironment, primitive CD34(+) cells maintain a Rh123 phenotype that correlates with their in vitro CAFC activity. Thus, Rh123 staining is an effective way to define functional subsets of primitive hematopoietic cell populations. (C) 1996 by The American Society of Hematology.
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页码:1297 / 1305
页数:9
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