Gamba-Vitalo C, Gallicchio V S, Watts T D, Chen M G
Exp Hematol. 1983 May;11(5):382-8.
We have investigated the effects of lithium on the proliferative potential of murine megakaryocyte stem cells (CFUMeg) in vitro and on circulating platelet levels in vivo. At optimal levels of megakaryocyte-colony stimulating factor (Meg-CSF) (10%) concentrations of 0.5, 1.0 and 3.0 meq/L augmented CFUMeg numbers. Significant increases of 133% and 125% over control levels were observed at 1.0 and 3.0 meq/L, respectively. At suboptimal concentrations of Meg-CSF (1.0%), Li effected a maximum increase of 200% over control levels at 1.0 meq/L suggesting a greater sensitivity of CFUMeg to stimulatory factors in the presence of Li. To better define the mode of action of Li, heterogenous bone marrow was separated into adherent and non-adherent cell populations and cultured in the presence of Li. Non-adherent cells cultured in the presence of 0.5, 1.0 and 3.0 meq/L Li showed significant increases in CFUMeg over non-adherent cells cultured without Li. These results suggest a direct effect of Li on CFUMeg. Cells cultured from the adherent cell population also responded to Li with enhanced CFUMeg numbers. This response may be a direct stem cell effect or an indirect effect via the production of endogenous Meg-CSF. One meq/L of Li when injected i.p., produced a thrombocytosis from days 4 through 15, with a maximum at 6 days post-Li treatment. These results suggest Li is an effective agent for stimulating megakaryocytopoiesis and has both direct and possibly indirect effects on the megakaryocyte stem cell.
我们研究了锂对小鼠巨核细胞干细胞(CFUMeg)体外增殖潜力以及体内循环血小板水平的影响。在巨核细胞集落刺激因子(Meg-CSF)的最佳水平(10%)下,0.5、1.0和3.0毫当量/升的锂浓度可增加CFUMeg数量。在1.0和3.0毫当量/升时,分别观察到比对照水平显著增加133%和125%。在Meg-CSF的次优浓度(1.0%)下,锂在1.0毫当量/升时比对照水平最大增加200%,表明在锂存在的情况下CFUMeg对刺激因子更敏感。为了更好地确定锂的作用方式,将异质性骨髓分离为贴壁细胞群和非贴壁细胞群,并在锂存在的情况下进行培养。在0.5、1.0和3.0毫当量/升锂存在下培养的非贴壁细胞与未添加锂培养的非贴壁细胞相比,CFUMeg显著增加。这些结果表明锂对CFUMeg有直接作用。从贴壁细胞群培养的细胞对锂也有反应,CFUMeg数量增加。这种反应可能是直接的干细胞效应,也可能是通过内源性Meg-CSF产生的间接效应。腹腔注射1毫当量/升的锂,从第4天到第15天会导致血小板增多,锂处理后第6天达到最大值。这些结果表明锂是刺激巨核细胞生成的有效药物,对巨核细胞干细胞有直接和可能的间接作用。