Fini Milena, Torricelli Paola, Giavaresi Gianluca, Aldini Nicolò Nicoli, Cavani Francesco, Setti Stefania, Nicolini Andrea, Carpi Angelo, Giardino Roberto
Laboratory of Experimental Surgery, Research Institute Codivilla-Putti, Rizzoli Orthopaedic Institute, Bologna, Italy.
Biomed Pharmacother. 2008 Dec;62(10):709-15. doi: 10.1016/j.biopha.2007.03.001. Epub 2007 Apr 3.
It has been demonstrated that pulsed electromagnetic field (PEMF) stimulation has a chondroprotective effect on osteoarthritis (OA) progression in the knee joints of the 12-month-old guinea pigs. The aim of the present study was to discover whether the therapeutic efficacy of PEMFs was maintained in older animals also in more severe OA lesions. PEMFs were administered daily (6 h/day for 6 months) to 15-month-old guinea pigs. The knee joints (medial and lateral tibial plateaus, medial and lateral femoral condyles) were evaluated by means of a histological/histochemical Mankin modified by Carlsson grading score and histomorphometric measurements of cartilage thickness (CT), fibrillation index (FI), subchondral bone thickness (SBT) and epiphyseal bone microarchitecture (bone volume: BV/TV; trabecular thickness: Tb.Th; trabecular number: Tb.N; trabecular separation: Tb.SP). Periarticular knee bone was also evaluated with dual X-ray absorptiometry (DXA). PEMF stimulation significantly changed the progression of OA lesions in all examined knee areas. In the most affected area of the knee joint (medial tibial plateau), significant lower histochemical score (p<0.0005), FI (p<0.005), SBT (p<0.05), BV/TV (p<0.0005), Tb.Th (p<0.05) and Tb.N (p<0.05) were observed while CT (p<0.05) and Tb.Sp (p<0.0005) were significantly higher than in SHAM-treated animals. DXA confirmed the significantly higher bone density in SHAM-treated animals. Even in the presence of severe OA lesions PEMFs maintained a significant efficacy in reducing lesion progression.
已证实脉冲电磁场(PEMF)刺激对12月龄豚鼠膝关节骨关节炎(OA)的进展具有软骨保护作用。本研究的目的是探究在年龄较大的动物以及更严重的OA损伤中,PEMF的治疗效果是否依然存在。对15月龄豚鼠每日进行PEMF治疗(每天6小时,持续6个月)。通过经卡尔森改良的组织学/组织化学曼金分级评分以及软骨厚度(CT)、纤维化指数(FI)、软骨下骨厚度(SBT)和骨骺骨微结构(骨体积:BV/TV;骨小梁厚度:Tb.Th;骨小梁数量:Tb.N;骨小梁间距:Tb.SP)的组织形态计量学测量来评估膝关节(内侧和外侧胫骨平台、内侧和外侧股骨髁)。还采用双能X线吸收法(DXA)评估膝关节周围的骨情况。PEMF刺激显著改变了所有检查膝关节区域OA损伤的进展。在膝关节最受影响的区域(内侧胫骨平台),观察到组织化学评分显著降低(p<0.0005)、FI(p<0.005)、SBT(p<0.05)、BV/TV(p<0.0005)、Tb.Th(p<0.05)和Tb.N(p<0.05),而CT(p<0.05)和Tb.Sp(p<0.0005)显著高于假手术治疗的动物。DXA证实假手术治疗动物的骨密度显著更高。即使存在严重的OA损伤,PEMF在减少损伤进展方面仍保持显著疗效。