Dolce C, Kinniburgh A J, Dziak R
Department of Oral Biology, State University of New York at Buffalo 14214, USA.
Arch Oral Biol. 1996 Dec;41(12):1101-8. doi: 10.1016/s0003-9969(96)00098-2.
Previous studies have reported changes in proliferation, second-messenger generation and activation of various cellular processes when osteoblasts have been mechanically stimulated. Recent evidence suggests that mechanical loading of long bones induces immediate early-gene expression. Immediate early genes, such as Egr-1, are genes that control cell proliferation, are involved in signal transduction, and share properties of transcription factors. The purpose of this study was to examine how mechanical deformation of osteoblasts affects cellular proliferation and Egr-1 mRNA induction. Osteoblasts were isolated from collagenase digestion of newborn rat calvariae, cultured in Petri dishes with flexible bottoms and then constantly stretched, producing an increase of 3 or 7% in surface area. A mechanical stretch of 7% for 0.5 or 24 h resulted in a doubling of [3H]thymidine incorporation, while 50 nM of epidermal growth factor resulted in a 4-fold increase. A time-course experiment showed that a 7% stretch induced Egr-1 mRNA as early as 15 mm, reaching maximum levels by 60 min and returning to baseline by 120 min. Epidermal growth factor at 50 nM for 60 min resulted in a 3.8-fold Egr-1 mRNA induction. A mechanical stretch of 3% for 30 min also produced an Egr-1 mRNA induction. No induction of Egr-1 mRNA was seen in osteoblasts that were exposed to conditioned media from deformed cells. It is concluded that the immediate early gene, Egr-1, may be directly involved in the signal-transduction pathway of mechanical stimuli in osteoblasts.
以往的研究报道了成骨细胞受到机械刺激时,其增殖、第二信使生成及各种细胞过程的激活发生了变化。最近的证据表明,长骨的机械负荷可诱导立即早期基因表达。立即早期基因,如Egr-1,是控制细胞增殖、参与信号转导并具有转录因子特性的基因。本研究的目的是检测成骨细胞的机械变形如何影响细胞增殖和Egr-1 mRNA的诱导。从新生大鼠颅骨胶原酶消化物中分离出成骨细胞,培养在底部柔韧的培养皿中,然后持续拉伸,使表面积增加3%或7%。7%的机械拉伸0.5或24小时导致[3H]胸苷掺入量增加一倍,而50 nM的表皮生长因子导致增加4倍。一项时间进程实验表明,7%的拉伸早在15分钟就诱导了Egr-1 mRNA,60分钟达到最高水平,120分钟回到基线水平。50 nM的表皮生长因子作用60分钟导致Egr-1 mRNA诱导增加3.8倍。3%的机械拉伸30分钟也产生了Egr-1 mRNA诱导。暴露于变形细胞条件培养基中的成骨细胞未观察到Egr-1 mRNA的诱导。结论是,立即早期基因Egr-1可能直接参与成骨细胞机械刺激的信号转导途径。