Mulder A H, Visser J W, van den Engh G J
Exp Hematol. 1985 Sep;13(8):768-75.
We have determined the thymus-repopulating capacity of purified hemopoietic stem cells, bone marrow cells from mice injected four days previously with 5-fluorouracil (5-FUBM), and bone marrow cells cultured in the presence of stem-cell-activating factor (SAF; SAFBM). SAF is identical to interleukin 3 (IL-3). Purified stem cells are more enriched in day-12 CFU-S than in day-8 CFU-S. 5-FUBM consists of CFU-S that give rise to late (day-12) spleen colonies. SAFBM contains predominantly CFU-S that give rise to early spleen colonies (days 6-8). There is also a net increase in the number of spleen colony-forming units (CFU-S) in these cultures. Thymus regeneration after transplantation with either purified stem cells or 5-FUBM was delayed approximately three days as compared with that after transplantation with normal bone marrow cells. This delay can be ascribed to the absence of prothymocytes in these preparations. Thymus regeneration by SAFBM was delayed approximately ten days as compared with that after transplantation with normal bone marrow cells. The most likely explanation of these results is as follows. The prothymocytes in normal bone marrow produce a relatively limited offspring in the thymus soon after transplantation. This is rapidly replaced by the offspring of newly formed prothymocytes, the results of differentiation of the pluripotent stem cells. These stem cells also give rise to late spleen colonies. Stem cells that give rise to early spleen colonies appear to have lost the capacity for differentiation into the T-cell lineage.
我们已经测定了纯化的造血干细胞、4天前注射过5-氟尿嘧啶的小鼠骨髓细胞(5-FUBM)以及在干细胞激活因子(SAF;SAFBM)存在下培养的骨髓细胞的胸腺重建能力。SAF与白细胞介素3(IL-3)相同。纯化的干细胞中第12天的脾集落形成单位(CFU-S)比第8天的CFU-S更丰富。5-FUBM由产生晚期(第12天)脾集落的CFU-S组成。SAFBM主要包含产生早期脾集落(第6 - 8天)的CFU-S。这些培养物中脾集落形成单位(CFU-S)的数量也有净增加。与移植正常骨髓细胞后相比,移植纯化的干细胞或5-FUBM后的胸腺再生延迟了约三天。这种延迟可归因于这些制剂中缺乏前胸腺细胞。与移植正常骨髓细胞后相比,SAFBM的胸腺再生延迟了约十天。这些结果最可能的解释如下。正常骨髓中的前胸腺细胞在移植后不久在胸腺中产生的后代相对有限。这很快被新形成的前胸腺细胞的后代所取代,这些后代是多能干细胞分化的结果。这些干细胞也产生晚期脾集落。产生早期脾集落的干细胞似乎已经失去了分化为T细胞谱系的能力。