Imada Chiharu, Hasumura Mai, Nawa Katsuhiko
Discovery Research Laboratory, Daiichi Pharmaceutical Company Limited, Kita-Kasai, Edogawa, Tokyo, Japan.
Cytokine. 2005 Sep 21;31(6):447-53. doi: 10.1016/j.cyto.2005.07.001.
Large ex vivo expansion of hematopoietic stem cells (HSCs) sufficient for use in clinical applications has not been achieved, although the influence of some cytokines including SCF, IL-11, Flt3-L, and TPO for this purpose has been reported. We present evidence for an indirect effect of macrophage colony-stimulating factor (M-CSF) on expansion of murine HSCs. Fresh Lin(-/low) cells were isolated from Ly5.1 mouse bone marrow and cultured with or without M-CSF in the presence of SCF + IL-11 + Flt3-L or SCF + IL-11 + TPO for 6 days. The expanded cells were harvested and transplanted into lethally irradiated Ly5.2 recipients with competitor cells. Culture of Lin(-/low) cells with M-CSF significantly enhanced long-term engraftment. When the more enriched HSC populations of Lin(-/low) c-Kit(+) Sca-1(+) cells were used as a source of HSCs, such a promotive effect was not observed, in agreement with negative expression of the M-CSF receptor (c-Fms). However, co-culture with Lin(-/low) c-Fms(+) resulted in a significant increase of long-term engraftment. These results suggested that M-CSF is an indirect stimulator for ex vivo expansion of HSCs in the presence of SCF, IL-11, Flt3-L, and TPO. These observations provide new directions for ex vivo expansion and insight into new engraftment regulation through M-CSF signaling.
尽管已经报道了包括干细胞因子(SCF)、白细胞介素-11(IL-11)、Flt3配体(Flt3-L)和血小板生成素(TPO)在内的一些细胞因子在此方面的影响,但足以用于临床应用的造血干细胞(HSCs)的大规模体外扩增尚未实现。我们提供了巨噬细胞集落刺激因子(M-CSF)对小鼠造血干细胞扩增具有间接作用的证据。从Ly5.1小鼠骨髓中分离新鲜的Lin(-/low)细胞,并在存在SCF + IL-11 + Flt3-L或SCF + IL-11 + TPO的情况下,分别在有或无M-CSF的条件下培养6天。收获扩增后的细胞,并将其与竞争细胞一起移植到经致死性照射的Ly5.2受体中。用M-CSF培养Lin(-/low)细胞可显著增强长期植入。当使用更富集的Lin(-/low) c-Kit(+) Sca-1(+)细胞群体作为造血干细胞来源时,未观察到这种促进作用,这与M-CSF受体(c-Fms)的阴性表达一致。然而,与Lin(-/low) c-Fms(+)共培养导致长期植入显著增加。这些结果表明,在存在SCF、IL-11、Flt3-L和TPO的情况下,M-CSF是造血干细胞体外扩增的间接刺激因子。这些观察结果为体外扩增提供了新的方向,并深入了解了通过M-CSF信号传导的新的植入调节机制。