Takano-Yamamoto T, Kawakami M, Sakuda M
Department of Orthodontics, Osaka University, Faculty of Dentistry, Japan.
J Dent Res. 1992 Dec;71(12):1920-5. doi: 10.1177/00220345920710121301.
A 2-mm non-healing bony defect was prepared in the premaxilla of male Wistar rats weighing about 180 g as a simulation of an alveolar cleft, for determination of whether a pulsing electromagnetic field (PEMF) could promote regeneration of bone induced by demineralized bone matrix (DBM). The defect was either treated with 7 mg DBM or was left as a non-grafted control. The rats were exposed to a PEMF with a frequency of 100 Hz, a 10-ms-wide burst with 100 microseconds-wide quasi-rectangular pulses, repeating at 15 Hz, and magnetic field strength of 1.5-1.8 G. Alkaline phosphatase activity increased significantly from day 7 in the DBM-graft-plus-PEMF group and from day 10 in the DBM-graft group, reaching a maximum on day 14. A greater-than-two-fold rise in alkaline phosphatase activity and a three-fold rise in the amount of 45Ca incorporation in the DBM-graft-plus-PEMF group were attained compared with those of the DBM-graft group. The DBM-graft-plus-PEMF group produced more bone with almost complete osseous bridging in the defect sites than did the group treated with DBM only on day 35. The findings indicate that PEMF had an enhancing effect on the bone-inductive properties of the DBM through the stimulation of osteoblast differentiation induced by DBM.
在体重约180克的雄性Wistar大鼠的前颌骨制备一个2毫米的不愈合骨缺损,模拟牙槽嵴裂,以确定脉冲电磁场(PEMF)是否能促进脱矿骨基质(DBM)诱导的骨再生。缺损处要么用7毫克DBM处理,要么作为未移植的对照。大鼠暴露于频率为100赫兹、脉冲宽度为10毫秒且准矩形脉冲宽度为100微秒、以15赫兹重复、磁场强度为1.5 - 1.8高斯的PEMF。碱性磷酸酶活性在DBM移植加PEMF组从第7天开始显著增加,在DBM移植组从第10天开始显著增加,在第14天达到最大值。与DBM移植组相比,DBM移植加PEMF组的碱性磷酸酶活性增加了两倍多,45Ca掺入量增加了三倍。在第35天,DBM移植加PEMF组在缺损部位产生了更多的骨,几乎完全形成骨桥,而仅用DBM处理的组则不然。这些发现表明,PEMF通过刺激DBM诱导的成骨细胞分化,对DBM的骨诱导特性具有增强作用。