Ploemacher R E, van Soest P L, Voorwinden H, Boudewijn A
Institute of Hematology, Erasmus University, Rotterdam, The Netherlands.
Leukemia. 1993 Sep;7(9):1381-8.
Interleukin 12 (IL-12; natural killer cell stimulatory factor, NKSF; cytotoxic lymphocyte maturation factor, CLMF) was studied for its effects on the survival and generation of hemopoietic progenitors (CFU-C, CAFC day 7-14) and long-term culture initiating stem cells (CAFC day 28-35) by post-5-fluorouracil (FU) bone marrow cells (BM) in low-serum liquid culture. Previous data have shown that IL-12 may act as a potent synergistic factor stimulating multilineage expression of hemopoietic stem cells in the presence of IL-3 in combination with Steel factor (SF) or IL-11. IL-12 or IL-11 alone did not support CFU-C production in liquid culture of a low-density fraction of day-6 post-FU BM. IL-11 and SF showed potent synergy with IL-3 to augment output CFU-C numbers and support CAFC-28/35 maintenance; SF as a single factor, or in combination with IL-11 or IL-12, allowed low recovery of CFU-C and all CAFC subsets. IL-12 synergized with IL-3, and with IL-3 + SF, to moderately increase progenitor production in liquid cultures. Similarly, survival and generation of the primitive CAFC-28/35 was consistently increased when IL-12 was used in combination with IL-3, or IL-3 + SF. The combination of 3, SF and 12 supported a significantly higher recovery of CAFC-35 than did the combination of 3, SF and 11, and CAFC-35 were numerically expanded during culture. Furthermore, IL-12 acted synergistically with IL-3 to enhance CFU-C output over a prolonged period using progenitor-depleted 3-day post-FU BM. These data show that IL-12 interacts with IL-3 and SF to regulate survival and growth of myeloid stem cells and progenitor cells.
白细胞介素12(IL-12;自然杀伤细胞刺激因子,NKSF;细胞毒性淋巴细胞成熟因子,CLMF)通过5-氟尿嘧啶(FU)处理后的骨髓细胞(BM)在低血清液体培养中,研究其对造血祖细胞(CFU-C、第7 - 14天的CAFC)和长期培养起始干细胞(第28 - 35天的CAFC)存活和生成的影响。先前的数据表明,在IL-3与Steel因子(SF)或IL-11联合存在的情况下,IL-12可能作为一种强大的协同因子刺激造血干细胞的多谱系表达。单独的IL-12或IL-11在FU处理后第6天低密度骨髓细胞的液体培养中不支持CFU-C的产生。IL-11和SF与IL-3显示出强大的协同作用,以增加CFU-C的产量并支持CAFC-28/35的维持;SF作为单一因子,或与IL-11或IL-12联合使用,CFU-C和所有CAFC亚群的回收率较低。IL-12与IL-3以及与IL-3 + SF协同作用,适度增加液体培养中的祖细胞产量。同样,当IL-12与IL-3或IL-3 + SF联合使用时,原始CAFC-28/35的存活和生成持续增加。3、SF和12的组合比3、SF和11的组合支持CAFC-35的回收率显著更高,并且CAFC-35在培养过程中数量上有所增加。此外,使用FU处理后3天的祖细胞耗竭的骨髓,IL-12与IL-3协同作用,在较长时间内增强CFU-C的产量。这些数据表明,IL-12与IL-3和SF相互作用,调节髓系干细胞和祖细胞的存活和生长。