Sonoda Y, Kimura T, Sakabe H, Tanimukai S, Ohmizono Y, Nakagawa S, Yokota S, Lyman S D, Abe T
Department of Hygiene, Kyoto Prefectural University of Medicine, Japan.
Eur J Haematol. 1997 Apr;58(4):257-64. doi: 10.1111/j.1600-0609.1997.tb01664.x.
We studied the effect of human flt3/flk2 ligand (FL) on the proliferation and differentiation of purified CD34+ blood progenitors which express different levels of c-kit protein in clonal cell culture in comparison with that of stem cell factor (SCF). FL alone did not support significant colony formation. However, FL significantly enhanced neutrophil colony (CFU-G) formation in the presence of granulocyte-colony stimulating factor (G-CSF) by peripheral blood (PB)-derived CD34+c-kit- cells which contained a large number of CFU-G. In addition, FL could synergistically increase the number of CFU-G supported by a combination of interleukin (IL)-3 and G-CSF, as did SCF. As we reported previously, SCF showed a significant burst-promoting activity (BPA). In contrast, FL did not exhibit any BPA on PB-derived CD34+c-kithigh cells in which erythroid-burst (BFU-E) was highly enriched. However, FL could synergize with IL-3 or GM-CSF in support of erythrocyte-containing mixed (E-Mix) colony by PB-derived CD34+c-kithigh or low cells in the presence of Epo. Replating of E-Mix colonies derived from CD34+c-kithigh cells supported by IL-3+Epo+SCF yielded more secondary colonies than those supported by IL-3+Epo or IL-3+Epo+FL. When PB-derived CD34+c-kitlow cells which represent a more immature population than CD34+c-kithigh cells were used as the target, number of secondary colonies supported by IL-3+Epo, IL-3+Epo+SCF or IL-3+Epo+FL was comparable. However, the number of lineages expressed in the secondary culture was significantly larger in the primary culture containing IL-3+Epo+FL than in that containing IL-3+Epo. These results suggest that FL not only acts on neutrophilic progenitors, but also on more immature multipotential progenitors.
我们在克隆细胞培养中研究了人flt3/flk2配体(FL)对纯化的表达不同水平c-kit蛋白的CD34⁺血液祖细胞增殖和分化的影响,并与干细胞因子(SCF)进行了比较。单独的FL不能支持显著的集落形成。然而,FL在存在粒细胞集落刺激因子(G-CSF)的情况下,能显著增强外周血(PB)来源的含有大量粒细胞集落(CFU-G)的CD34⁺c-kit⁻细胞的中性粒细胞集落(CFU-G)形成。此外,FL能像SCF一样,协同增加白细胞介素(IL)-3和G-CSF联合支持的CFU-G数量。正如我们之前报道的,SCF显示出显著的爆式促进活性(BPA)。相比之下,FL对PB来源的CD34⁺c-kit高表达细胞(其中富含红系爆式集落(BFU-E))没有表现出任何BPA。然而,在促红细胞生成素(Epo)存在的情况下,FL能与IL-3或粒细胞-巨噬细胞集落刺激因子(GM-CSF)协同支持PB来源的CD34⁺c-kit高表达或低表达细胞形成含红细胞的混合(E-Mix)集落。由IL-3+Epo+SCF支持的CD34⁺c-kit高表达细胞形成的E-Mix集落再接种后产生的次级集落比由IL-3+Epo或IL-3+Epo+FL支持的更多。当使用代表比CD34⁺c-kit高表达细胞更不成熟群体的PB来源的CD34⁺c-kit低表达细胞作为靶细胞时,IL-3+Epo、IL-3+Epo+SCF或IL-3+Epo+FL支持的次级集落数量相当。然而,在含有IL-3+Epo+FL的原代培养中,次级培养中表达的谱系数量比含有IL-3+Epo的原代培养中显著更多。这些结果表明,FL不仅作用于嗜中性祖细胞,也作用于更不成熟的多能祖细胞。