Morisaki N, Koyama N, Mori S, Kanzaki T, Koshikawa T, Saito Y, Yoshida S
Second Department of Internal Medicine, School of Medicine, Chiba University, Japan.
Atherosclerosis. 1989 Jul;78(1):61-7. doi: 10.1016/0021-9150(89)90159-7.
Recently intimal thickening was shown to be due to stimulation of proliferation of arterial smooth muscle cells (SMC) by autocrine secretion of growth factor(s). We have reported that cultured rabbit aortic SMC secrete a growth factor (SDGF) distinct from other known growth factors. This paper reports on studies on the biological characteristics of SDGF. Putative "competence" and "progression" growth factors synergistically stimulated DNA synthesis of cultured rabbit aortic SMC. Conditioned medium (CM) from SMC containing SDGF stimulated DNA synthesis in SMC synergistically with either the competence factors or the progression factors. This synergistic effect was also observed in the presence of optimal concentrations of both competence and progression factors. The continuous presence of CM was essential for its stimulation of DNA synthesis whereas the presence of PDGF for only the first 4 h of culture was sufficient to induce maximum stimulation of DNA synthesis. These results suggest that SDGF is a new growth factor distinct from either competence or progression factors and that it stimulates a different pathway in SMC from those stimulated by other known growth factors.
最近研究表明,内膜增厚是由于生长因子的自分泌刺激动脉平滑肌细胞(SMC)增殖所致。我们曾报道,培养的兔主动脉SMC分泌一种不同于其他已知生长因子的生长因子(SDGF)。本文报道了对SDGF生物学特性的研究。假定的“启动”和“促有丝分裂”生长因子协同刺激培养的兔主动脉SMC的DNA合成。含有SDGF的SMC条件培养基(CM)与启动因子或促有丝分裂因子协同刺激SMC中的DNA合成。在启动因子和促有丝分裂因子均为最佳浓度的情况下,也观察到了这种协同效应。CM的持续存在对其刺激DNA合成至关重要,而仅在培养的前4小时存在血小板衍生生长因子(PDGF)就足以诱导最大程度的DNA合成刺激。这些结果表明,SDGF是一种不同于启动因子或促有丝分裂因子的新型生长因子,并且它在SMC中刺激的途径与其他已知生长因子所刺激的途径不同。