Gallicchio V S, Chen M G
Exp Hematol. 1981 Aug;9(7):804-10.
We studied the effect of lithium on normal marrow hematopoiesis by determining the numbers of pluripotential (CFUS) and committed stem cells (CFUC, CFUE and BFUE) after in vitro and in vivo exposure to lithium. In the presence of 1 meq/L lithium in vitro, marrow CFUS and CFUC were increased; higher concentrations (greater than or equal to 5 meq/L) were inhibitory. Marrow CFUE and BFUE were decreased at concentrations of lithium greater than or equal to 0.5 meq/L. In vivo (0.5-5.0 meq/L i.p.), lithium produced similar results to those obtained in vitro with striking CFUC enhancement. Serum from these lithium-treated mice contained increased colony stimulating factor (CSF). In the Dexter continuous marrow culture system, lithium stimulated increased CFUC production from the non-adherent fraction. These in vitro nd vivo studies document lithium's ability to modulate hematopoiesis by influencing pluripotential and committed stem cell proliferation and differentiation towards granulopoiesis, apparently at the expense of erythropoiesis. Mechanisms of this modulation are discussed.
我们通过测定体外和体内暴露于锂后多能干细胞(CFUS)和定向干细胞(CFUC、CFUE和BFUE)的数量,研究了锂对正常骨髓造血的影响。在体外1 meq/L锂存在的情况下,骨髓CFUS和CFUC增加;更高浓度(大于或等于5 meq/L)则具有抑制作用。当锂浓度大于或等于0.5 meq/L时,骨髓CFUE和BFUE减少。在体内(腹腔注射0.5 - 5.0 meq/L),锂产生了与体外相似的结果,CFUC显著增强。这些经锂处理的小鼠血清中集落刺激因子(CSF)增加。在德克斯特连续骨髓培养系统中,锂刺激非贴壁部分产生更多的CFUC。这些体外和体内研究证明,锂能够通过影响多能干细胞和定向干细胞的增殖以及向粒细胞生成的分化来调节造血,显然是以红细胞生成为代价的。本文讨论了这种调节的机制。