Lee M Y, Kaushansky K, Judkins S A, Lottsfeldt J L, Waheed A, Shadduck R K
Department of Biological Structure, University of Washington School of Medicine, Seattle 98195.
Blood. 1989 Jul;74(1):115-22.
Transplantation of a murine mammary carcinoma (CE maca) into mice induces marked granulocytosis and hypercalcemia secondary to excessive bone resorption. Such responses are not induced by another murine mammary carcinoma Bc66. In order to understand the mechanisms of these unique phenomena, we analyzed mRNA of tumor cells for expression of murine granulopoietic growth factors and studied interactions of tumor-derived factors using antiserum to a growth factor in vitro and in vivo. The Northern blot analysis of CE tumor clones revealed the expression of granulocyte colony stimulating factor (G-CSF) and macrophage colony stimulating factor (M-CSF), but no other CSF genes, while the Bc66 clone expressed only M-CSF. The G-CSF and M-CSF gene expression in CE tumor clones was accompanied by secretion of these proteins in culture. The granulocyte stimulating activity of CE tumor-derived G-CSF or recombinant human G-CSF was markedly enhanced by purified M-CSF in vitro. Significant but variable neutrophilia was observed in mice inoculated with CE tumor clones. Anti-M-CSF treatment of CE tumor-bearing mice significantly reduced neutrophilia, but did not affect hypercalcemia. These studies document that G-CSF and M-CSF are produced constitutively from the CE maca, and G-CSF is likely responsible for granulocytosis induced by this tumor. G-CSF and M-CSF function synergistically in granulocyte stimulation in vitro and this synergism may also play a role in marked granulocytosis of tumor-bearing animals, providing further evidence of the effect of CSFs in vivo.
将小鼠乳腺癌(CE maca)移植到小鼠体内会引发显著的粒细胞增多症和高钙血症,这是由于过度的骨吸收所致。而另一种小鼠乳腺癌Bc66不会引发此类反应。为了了解这些独特现象的机制,我们分析了肿瘤细胞的mRNA以检测小鼠粒细胞生成生长因子的表达,并使用针对一种生长因子的抗血清在体外和体内研究了肿瘤衍生因子的相互作用。对CE肿瘤克隆的Northern印迹分析显示,粒细胞集落刺激因子(G-CSF)和巨噬细胞集落刺激因子(M-CSF)有表达,但没有其他CSF基因表达,而Bc66克隆仅表达M-CSF。CE肿瘤克隆中G-CSF和M-CSF基因的表达伴随着这些蛋白质在培养物中的分泌。在体外,纯化的M-CSF可显著增强CE肿瘤衍生的G-CSF或重组人G-CSF的粒细胞刺激活性。在接种CE肿瘤克隆的小鼠中观察到显著但可变的中性粒细胞增多。对携带CE肿瘤的小鼠进行抗M-CSF治疗可显著降低中性粒细胞增多,但不影响高钙血症。这些研究证明,CE maca可组成性产生G-CSF和M-CSF,G-CSF可能是该肿瘤诱导粒细胞增多的原因。G-CSF和M-CSF在体外粒细胞刺激中发挥协同作用,这种协同作用可能也在荷瘤动物的显著粒细胞增多中起作用,为CSF在体内的作用提供了进一步的证据。