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首页> 外文期刊>Osteoarthritis and cartilage >Low magnitude high frequency vibration accelerated cartilage degeneration but improved epiphyseal bone formation in anterior cruciate ligament transect induced osteoarthritis rat model
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Low magnitude high frequency vibration accelerated cartilage degeneration but improved epiphyseal bone formation in anterior cruciate ligament transect induced osteoarthritis rat model

机译:低级高频振动加速了软骨的退化,但改善了前交叉韧带横断所致骨关节炎大鼠模型的epi骨形成

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摘要

Objectives: To evaluate the effects of low-magnitude high-frequency vibration (LMHFV) on degenerated articular cartilage and subchondral bone in anterior cruciate ligament transection (ACLT) induced osteoarthritis (OA) rat model. Methods: 6 months old female Sprague-Dawley rats received ACLT on right knee and randomly divided into treatment and control groups. OA developed 12 weeks after surgery. LMHFV (35Hz, 0.3 g) treatment was given 20min/day and 5 days/week. After 6, 12 and 18 weeks, six rats of each group were sacrificed at each time point and the right knees were harvested. OA grading score, distal femur cartilage volume (CV), subchondral bone morphology, elastic modulus of cartilage and functional changes between groups were analyzed. Results: Increased cartilage degradation (higher OA grading score) and worse functional results (lower duty cycle, regular index and higher limb idleness index) were observed after LMHFV treatment (P=0.011, 0.020, 0.012 and 0.005, respectively). CV increased after LMHFV treatment (P=0.019). Subchondral bone density increased with OA progress (P<0.01). Increased BV/TV, Tb.N and decreased Tb.Sp were observed in distal femur epiphysis in LMHFV treatment group (P=0.006, 0.018 and 0.011, respectively). Conclusion: LMHFV accelerated cartilage degeneration and caused further functional deterioration of OA affected limb in ACLT-induced OA rat model. In contrast, LMHFV promoted bone formation in OA affected distal femur epiphysis, but did not reverse OA progression.
机译:目的:在前交叉韧带横断(ACLT)诱发的骨关节炎(OA)大鼠模型中评估低强度高频振动(LMHFV)对退化性软骨和软骨下骨的影响。方法:6月龄的Sprague-Dawley雌性大鼠右膝接受ACLT,随机分为治疗组和对照组。 OA在手术后12周发展。 LMHFV(35Hz,0.3 g)处理时间为每天20分钟和每周5天。在第6、12和18周后,在每个时间点处死每组六只大鼠,并收获右膝。分析各组之间的OA分级评分,股骨远端软骨体积(CV),软骨下骨形态,软骨弹性模量和功能变化。结果:LMHFV治疗后观察到软骨降解增加(OA评分较高)和功能结果较差(占空比较低,正常指数和肢体闲置指数较高)(分别为P = 0.011、0.020、0.012和0.005)。 LMHFV治疗后CV升高(P = 0.019)。骨软骨下骨密度随OA进展而增加(P <0.01)。在LMHFV治疗组的股骨远端骨B中观察到BV / TV,Tb.N升高和Tb.Sp降低(分别为P = 0.006、0.018和0.011)。结论:LMHFV加速了ACLT诱发的OA大鼠模型中OA患肢的软骨变性,并进一步导致其功能退化。相反,LMHFV促进了OA受累股骨远端骨physi的骨形成,但并未逆转OA的进展。

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