Sakata S, Enoki Y, Tomita S, Kohzuki H, Nakatani A
Exp Hematol. 1985 Sep;13(8):745-9.
Clone cells of K562 that are able to synthesize hemoglobin spontaneously on a relatively high level were obtained by cell-cloning technique. The clone cell proliferated 25 times by day 6 in culture, and the growth rate was not affected by changing the dose of fetal calf serum (FCS) from 5% to 30%. On the other hand, the erythroid differentiation could be linearly enhanced by increasing dosage of FCS, reaching a maximum after four days in culture. The wild-type K562 cells were also slightly stimulated to synthesize hemoglobin by adding FCS (30% final concentration). The enhancing effect of 30% FCS on the erythroid differentiation in the clone cells was greater than that of 12.5 microM hemin, while in the wild-type cells the relationship was reversed. There were no effects of erythropoietin (Epo) on the hemoglobin synthesis in either the clone cells or the wild-type cells. When various kinds of sera were added to the standard culture of the clone cells, only FCS had the enhancing effect. These results suggest that spontaneous erythroid differentiation is not induced by hemin or Epo in FCS but by FCS-specific substance(s).
通过细胞克隆技术获得了能够相对高水平自发合成血红蛋白的K562克隆细胞。克隆细胞在培养第6天时增殖了25代,且生长速率不受胎牛血清(FCS)剂量从5%变为30%的影响。另一方面,通过增加FCS剂量可使红系分化呈线性增强,在培养4天后达到最大值。添加FCS(终浓度30%)也能轻微刺激野生型K562细胞合成血红蛋白。30% FCS对克隆细胞红系分化的增强作用大于12.5微摩尔血红素,而在野生型细胞中这种关系则相反。促红细胞生成素(Epo)对克隆细胞或野生型细胞的血红蛋白合成均无影响。当向克隆细胞的标准培养物中添加各种血清时,只有FCS具有增强作用。这些结果表明,FCS中的血红素或Epo不会诱导自发红系分化,而是由FCS特异性物质诱导。