Kimura T, Wang J, Minamiguchi H, Fujiki H, Harada S, Okuda K, Kaneko H, Yokota S, Yasukawa K, Abe T, Sonoda Y
Department of Hygiene, the Department of Gastroenterological Surgery, and the Third Department of Internal Medicine, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Stem Cells. 2000;18(6):444-52. doi: 10.1634/stemcells.18-6-444.
This study was designed to investigate the effects of a combination of soluble interleukin (sIL)-6 receptor (R) and IL-6 on the ex vivo expansion of human peripheral blood (PB)-derived hematopoietic progenitor cells in a short-term serum-free liquid suspension culture system, using PB-derived CD34(+)IL-6R(+/-) cells as a target. In combination with stem cell factor (SCF), IL-3, and sIL-6R/IL-6, the expansion efficiency (EE) for granulocyte/macrophage colony-forming unit (CFU-GM) reached a peak level on day 10 of incubation. On the other hand, the EE for erythroid burst (BFU-E) and mixed colony-forming unit (CFU-Mix) reached a peak level on day 7 of incubation. Among the cytokine combinations tested, SCF + IL-3 + sIL-6R/IL-6 + flt3 ligand (FL) most effectively expanded CFU-GM and CFU-Mix. The maximum EEs for CFU-GM and CFU-Mix were 208-fold and 42-fold, respectively. While the EE for BFU-E was 70-90-fold in the presence of SCF + IL-3 + sIL-6R/IL-6, FL significantly augmented the EE for CFU-GM and CFU-Mix. In contrast, thrombopoietin (TPO) significantly augmented the EE for CFU-Mix. Interestingly, in combination with IL-3 and SCF, newly generated IL-6R/IL-6 fusion protein (FP) expanded PB-derived BFU-E and CFU-Mix twice more effectively than a combination of sIL-6R and IL-6. These results demonstrated that human PB-derived committed progenitors were effectively expanded in vitro using sIL-6R/IL-6 or FP, in combination with IL-3, SCF and/or FL or TPO, and that FP may transduce a stronger intracellular signal than a combination of sIL-6R and IL-6.
本研究旨在探讨可溶性白细胞介素(sIL)-6受体(R)与白细胞介素-6联合使用,在短期无血清液体悬浮培养系统中,对人外周血(PB)来源的造血祖细胞体外扩增的影响,以PB来源的CD34(+)IL-6R(+/-)细胞为靶细胞。与干细胞因子(SCF)、白细胞介素-3和sIL-6R/白细胞介素-6联合使用时,粒细胞/巨噬细胞集落形成单位(CFU-GM)的扩增效率(EE)在培养第10天达到峰值水平。另一方面,红系爆式集落形成单位(BFU-E)和混合集落形成单位(CFU-Mix)的EE在培养第7天达到峰值水平。在所测试的细胞因子组合中,SCF +白细胞介素-3 + sIL-6R/白细胞介素-6 + fms样酪氨酸激酶3配体(FL)对CFU-GM和CFU-Mix的扩增效果最为显著。CFU-GM和CFU-Mix的最大EE分别为208倍和42倍。在SCF +白细胞介素-3 + sIL-6R/白细胞介素-6存在的情况下,BFU-E的EE为70 - 90倍,FL显著提高了CFU-GM和CFU-Mix的EE。相比之下,血小板生成素(TPO)显著提高了CFU-Mix的EE。有趣的是,与白细胞介素-3和SCF联合使用时,新生成的白细胞介素-6R/白细胞介素-6融合蛋白(FP)对PB来源的BFU-E和CFU-Mix的扩增效果比sIL-6R和白细胞介素-6的组合有效两倍。这些结果表明,使用sIL-6R/白细胞介素-6或FP,联合白细胞介素-3、SCF和/或FL或TPO,可在体外有效扩增人PB来源的定向祖细胞,并且FP可能比sIL-6R和白细胞介素-6的组合转导更强的细胞内信号。