中华物理医学与康复杂志
中華物理醫學與康複雜誌
중화물리의학여강복잡지
CHINESE JOURNAL OF PHYSICAL MEDICINE AND REHABILITATION
2012年
2期
89-93
,共5页
刘光华%刘邦忠%王平%薛军%陆志辉%陈建新%宋旭%孙慧
劉光華%劉邦忠%王平%薛軍%陸誌輝%陳建新%宋旭%孫慧
류광화%류방충%왕평%설군%륙지휘%진건신%송욱%손혜
高压交变电场%骨折%骨钙素%骨性碱性磷酸酶%骨密度
高壓交變電場%骨摺%骨鈣素%骨性堿性燐痠酶%骨密度
고압교변전장%골절%골개소%골성감성린산매%골밀도
High voltage alternating electric field therapy%Fractures%Osteocalcin%Bone alkaline phosphatase%Bone mineral density
目的 探讨高压交变电场治疗对大鼠骨折愈合的影响.方法 共选取SD大鼠48只,将其制成胫骨近侧皮质骨缺损模型,采用随机数字表法将制模成功的41只大鼠分为实验组(21只)与对照组( 20只).实验组每日接受高压交变电场治疗,对照组仅给予假刺激.于制模后第7、14、21、28天时各组分别取5只大鼠(实验组于制模后第14天时取6只)采血并检测血清骨钙素(OC)及骨性碱性磷酸酶(BAP)含量,随后处死大鼠并提取手术侧整根胫骨检测骨折处骨痂骨密度值(BMD);同时截取含骨折部位的l cm胫骨组织进行组织学观察.结果 实验组大鼠在制模后第14、28天时骨折部位BMD均显著高于对照组(P<0.05);血清学检测显示制模后第14、21、28天时实验组大鼠血清OC含量均显著高于对照组(P<0.05),制模后第14、28天时实验组BAP含量亦明显高于对照组(P<0.05);HE染色显示,在骨折愈合早期阶段(如制模后7 ~14 d),实验组骨折部位血肿机化、吸收均早于对照组,成软骨细胞、成骨细胞提早出现而且数量较多;在骨折愈合晚期(如制模后21~28 d)阶段,实验组骨小梁融合及矿化均早于对照组.结论 高压交变电场治疗能促进骨折部位血肿机化、吸收,促进骨祖细胞增殖与分化,加强成骨细胞、软骨细胞增殖并合成细胞外基质,从而加速骨折愈合,其治疗机制可能与促进骨折部位OC及BAP表达有关.
目的 探討高壓交變電場治療對大鼠骨摺愈閤的影響.方法 共選取SD大鼠48隻,將其製成脛骨近側皮質骨缺損模型,採用隨機數字錶法將製模成功的41隻大鼠分為實驗組(21隻)與對照組( 20隻).實驗組每日接受高壓交變電場治療,對照組僅給予假刺激.于製模後第7、14、21、28天時各組分彆取5隻大鼠(實驗組于製模後第14天時取6隻)採血併檢測血清骨鈣素(OC)及骨性堿性燐痠酶(BAP)含量,隨後處死大鼠併提取手術側整根脛骨檢測骨摺處骨痂骨密度值(BMD);同時截取含骨摺部位的l cm脛骨組織進行組織學觀察.結果 實驗組大鼠在製模後第14、28天時骨摺部位BMD均顯著高于對照組(P<0.05);血清學檢測顯示製模後第14、21、28天時實驗組大鼠血清OC含量均顯著高于對照組(P<0.05),製模後第14、28天時實驗組BAP含量亦明顯高于對照組(P<0.05);HE染色顯示,在骨摺愈閤早期階段(如製模後7 ~14 d),實驗組骨摺部位血腫機化、吸收均早于對照組,成軟骨細胞、成骨細胞提早齣現而且數量較多;在骨摺愈閤晚期(如製模後21~28 d)階段,實驗組骨小樑融閤及礦化均早于對照組.結論 高壓交變電場治療能促進骨摺部位血腫機化、吸收,促進骨祖細胞增殖與分化,加彊成骨細胞、軟骨細胞增殖併閤成細胞外基質,從而加速骨摺愈閤,其治療機製可能與促進骨摺部位OC及BAP錶達有關.
목적 탐토고압교변전장치료대대서골절유합적영향.방법 공선취SD대서48지,장기제성경골근측피질골결손모형,채용수궤수자표법장제모성공적41지대서분위실험조(21지)여대조조( 20지).실험조매일접수고압교변전장치료,대조조부급여가자격.우제모후제7、14、21、28천시각조분별취5지대서(실험조우제모후제14천시취6지)채혈병검측혈청골개소(OC)급골성감성린산매(BAP)함량,수후처사대서병제취수술측정근경골검측골절처골가골밀도치(BMD);동시절취함골절부위적l cm경골조직진행조직학관찰.결과 실험조대서재제모후제14、28천시골절부위BMD균현저고우대조조(P<0.05);혈청학검측현시제모후제14、21、28천시실험조대서혈청OC함량균현저고우대조조(P<0.05),제모후제14、28천시실험조BAP함량역명현고우대조조(P<0.05);HE염색현시,재골절유합조기계단(여제모후7 ~14 d),실험조골절부위혈종궤화、흡수균조우대조조,성연골세포、성골세포제조출현이차수량교다;재골절유합만기(여제모후21~28 d)계단,실험조골소량융합급광화균조우대조조.결론 고압교변전장치료능촉진골절부위혈종궤화、흡수,촉진골조세포증식여분화,가강성골세포、연골세포증식병합성세포외기질,종이가속골절유합,기치료궤제가능여촉진골절부위OC급BAP표체유관.
Objective To explore the effect of high voltage alternating electric field therapy on fracture healing in rats. Methods An animal model of cortical bone defect was successfully established in the unilateral proximal tibia of 41 rats.They were then randomized into an experimental group (21 rats) and a control group (20 rats).The animals in the experimentsl group were given high voltage alternating electric field therapy for 30 minutes daily,while those in the control group only had sham exposure to the high voltage alternating electric field therapy.Rats in each group were sacrificed at days 7,14,21 and 28 post-operation.After blood collection,the operated tibias of the rats were resected with muscle and other soft tissue removed.Bone mineral density (BMD) of the callus at the fracture point was measured using dual energy X-ray absorptiometry (DEXA).The calluses were then cut down and fixed,decalcificated and sliced for histological observation.At the same time serum osteocalcin ( OC ) and bone alkaline phosphatase (RAP) were also detected by ABC-ELISA. Results The BMD examination showed that callus BMD in the experimental group was significantly higher than in the control group at days 14 and 28.Serum OC and RAP in the experimental group were also higher at days 14 day 21,and OC was still significantly higher in the experimental group at day 28.Histological examination showed that in the early stages of bone healing hematoma absorption and organization appeared earlier in the experimental group than in the control group,with remarkable osteoblast and chondroblast proliferation.While at the later stage,bone trabeculas connection and mineralization also appeared earlier in the experimental group than in the control group. Conclusions High voltage alternating electric field therapy may promote fracture healing by accelerating hematoma absorption and organization,elevating osteoblast proliferation and differentiation as well as promoting extracellular matrix secretion and mineralization.The underlying therapeutic mechanism might be related to the increased expression of OC and RAP caused by exposure to the high voltage alternating electric field.