Ziboh V A, Miller A M, Wu M C, Yunis A A, Jimenez J, Wong G
J Cell Physiol. 1982 Oct;113(1):67-72. doi: 10.1002/jcp.1041130112.
The in vitro incubation of cells from turpentine-induced rat myeloid hyperplastic marrow and peritoneal monocyte/macrophage with 14C-arachidonic acid resulted in the incorporation of the radiolabel into the particulate phospholipids. Challenge of the radiolabeled cells with a highly purified type I CSF (CSF I) from human pancreatic carcinoma cells in continuous culture resulted in the hydrolysis and release of the 14C-arachidonic acid from the cellular phospholipids. The simultaneous challenge of the prelabeled cells with CSF-I and its specific antibody (anti-CSF-I antibody) inhibited the CSF-I induced hydrolysis of 14C-arachidonic acid from the cells. These results confer a specificity on the CSF-I induced release of arachidonic acid from the cellular phospholipids. Our data also demonstrated that the 14C-arachidonic acid released from the cellular phospholipids was further transformed into products of the cyclooxygenation and lipoxygenation pathways by cellular enzyme systems in both populations of cells. Interestingly, our data also indicate that the challenge of the granulocytic hyperplastic marrow cells and the monocyte/macrophage cells with purified CSF-I resulted in a higher generation of lipoxygenase products in the predominantly granulocytic cell population than in the population rich in monocyte/macrophage cells. The biological significance of this observation remains to be further explored. Thus, the CSF-I induced release of cellular arachidonic acid explains, at least in part, the presence of prostaglandins and other metabolites of arachidonic acid that are found in the media of hemopoietic cells incubated with a variety of CSF preparations.
用14C - 花生四烯酸对松节油诱导的大鼠骨髓增生性骨髓细胞和腹腔单核细胞/巨噬细胞进行体外培养,导致放射性标记物掺入颗粒性磷脂中。用来自连续培养的人胰腺癌细胞的高度纯化的I型集落刺激因子(CSF - I)对放射性标记的细胞进行刺激,导致细胞磷脂中的14C - 花生四烯酸水解并释放。用CSF - I及其特异性抗体(抗CSF - I抗体)同时刺激预先标记的细胞,可抑制CSF - I诱导的细胞中14C - 花生四烯酸的水解。这些结果赋予了CSF - I诱导细胞磷脂中花生四烯酸释放的特异性。我们的数据还表明,从细胞磷脂中释放的14C - 花生四烯酸在两种细胞群体中均通过细胞酶系统进一步转化为环氧化和脂氧化途径的产物。有趣的是,我们的数据还表明,用纯化的CSF - I刺激粒细胞增生性骨髓细胞和单核细胞/巨噬细胞,在以粒细胞为主的细胞群体中产生的脂氧化酶产物比富含单核细胞/巨噬细胞的群体中更高。这一观察结果的生物学意义仍有待进一步探索。因此,CSF - I诱导的细胞花生四烯酸释放至少部分解释了在用各种CSF制剂培养的造血细胞培养基中发现的前列腺素和花生四烯酸的其他代谢产物的存在。