Kim In Sook, Song Jong Keun, Zhang Yu Lian, Lee Tae Hyung, Cho Tae Hyung, Song Yun Mi, Kim Do Kyun, Kim Sung June, Hwang Soon Jung
Department of Oral & Maxillofacial Surgery, College of Dentistry, Seoul National University, Brain Korea 21 2nd Program, Korea.
Biochim Biophys Acta. 2006 Sep;1763(9):907-16. doi: 10.1016/j.bbamcr.2006.06.007. Epub 2006 Jun 27.
This study investigated biphasic electric current (BEC) functions as a new type of electrical stimulation to induce rat calvarial osteoblasts to proliferate, differentiate and synthesize cytokines. The culture system was designed so that biphasic current flowed between upper and lower gold plates. BEC helps to minimize the net charge accumulation during cell exposure to the electrical stimulation. Osteoblasts were exposed to electrical stimulation of 1.5 microA/cm2 at 3000 Hz, and the effect of BEC was assessed in the interrupted mode (6 h daily) and in the continuous mode (24 h daily), depending on the interval of stimulation. Whereas proliferation increased by 31% after stimulation in the continuous mode for 2 days, it was unaffected in the interrupted mode. The transcriptional expression of osteogenesis-related genes such as alkaline phosphatase (ALP), osteopontin, and type I collagen was unchanged 4 days after stimulation in both modes, while cbfa1 was decreased under the same conditions. There was no detectable change in mRNA expression of growth factors (BMP-2, -4, IGF-2 and TGF-beta1) that promote osteoblast differentiation. However, real-time RT-PCR and ELISA demonstrated that vascular endothelial growth factor (VEGF) was markedly up-regulated by BEC. Induction of VEGF by BEC was not hypoxia driven. In conclusion, the present in vitro study demonstrates that BEC increases cell proliferation and induces the production of VEGF. The BEC was more effective with continuous stimulation than with interrupted stimulation. To confirm whether BEC can enhance osteogenesis, further in vivo studies are needed.
本研究调查了双相电流(BEC)作为一种新型电刺激诱导大鼠颅骨成骨细胞增殖、分化和合成细胞因子的作用。设计培养系统使双相电流在上、下金板之间流动。BEC有助于在细胞暴露于电刺激期间将净电荷积累降至最低。将成骨细胞暴露于3000Hz、1.5微安/平方厘米的电刺激下,根据刺激间隔,以间断模式(每天6小时)和连续模式(每天24小时)评估BEC的效果。连续模式刺激2天后增殖增加31%,而间断模式下增殖未受影响。两种模式刺激4天后,成骨相关基因如碱性磷酸酶(ALP)、骨桥蛋白和I型胶原的转录表达均未改变,而在相同条件下cbfa1降低。促进成骨细胞分化的生长因子(BMP-2、-4、IGF-2和TGF-β1)的mRNA表达没有可检测到的变化。然而,实时RT-PCR和ELISA表明,BEC显著上调血管内皮生长因子(VEGF)。BEC对VEGF的诱导不是由缺氧驱动的。总之,目前的体外研究表明,BEC可增加细胞增殖并诱导VEGF的产生。连续刺激时BEC比间断刺激更有效。为确认BEC是否能增强成骨作用,需要进一步的体内研究。