低水平激光治疗对骨关节炎实验模型软骨修复的影响

Anderson Amaro dos Santos, P. Oliveira, K. Fernandes, Lara Rhon, C. Tim, F. Vasilceac, K. Z. Pinto, S. Mattiello, N. Parizotto, A. Renno
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引用次数: 4

摘要

摘要目的:探讨低水平激光治疗(LLLT)对大鼠前交叉韧带横断(ACLT)模型后关节软骨退行性变化的影响。方法:雄性Wistar大鼠80只,随机分为4组:1.)完整对照组(CG), 2.)损伤对照组(ICG), 3.) 10 J/cm2激光损伤组(L10), 4.) 50 J/cm2激光损伤组(L50)。动物分为2个亚组,分别在术后5周和8周进行不同的牺牲。采用ACLT诱导大鼠膝关节骨关节炎(OA)。LLLT在手术后2周开始,分别使用685 nm激光,以10和50 J/cm2进行15和30次治疗。进行定性和半定量组织学、形态计量学和免疫组织化学分析。结果:aclt后5周可观察到组织降解的初步迹象,表现为蛋白多糖浓度降低,ICG软骨厚度增加。术后8周,分析显示ICG退行性过程的进展,细胞数量增加,TNF-α、il -1 -β和MMP-13免疫表达升高。LLLT能够调节与降解过程相关的一些方面,如软骨细胞增殖数量的生物调节,防止蛋白多糖损失,降低MMP-13免疫表达。结论:本研究表明,685 nm激光照射,特别是10 J/cm2的激光照射,对大鼠膝关节退行性变的相关特征有预防作用。
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Effects of low-level laser therapy on cartilage repair in an experimental model of osteoarthritis
Abstract Objective: The aim of this study was to evaluate the effects of low level laser therapy (LLLT) on the degenerative process in the articular cartilage after an anterior cruciate ligament transection (ACLT) model in rats. Methods: Eighty male rats (Wistar) were divided into four groups: 1.) intact control group (CG), 2.) injured control group (ICG), 3.) injured laser-treated group at 10 J/cm2 (L10) and 4.) injured laser-treated group at 50 J/cm2 (L50). Animals were divided into 2 subgroups, with different periods of sacrifice (5 and 8 weeks post-surgery). The ACLT was used to induce osteoarthritis (OA) in the knees of the rats. LLLT started 2 weeks after the surgery and it was performed for 15 and 30 sessions, respectively using a 685-nm laser, at 10 and 50 J/cm2. Qualitative and semi-quantitative histologic, morphometric and immunohistochemistry analyses were performed. Results: Initial signs of tissue degradation could be observed 5 weeks post-ACLT, evidenced by the decrease of proteoglycan concentration and increase in cartilage thickness of the ICG. After 8 weeks post-surgery, analysis showed a progression of the degenerative processes in the ICG revealed by the increased cellularity and higher TNF-α, IL1-β and MMP-13 immunoexpression. LLLT was able to modulate some of the aspects relating to the degradative process, such as biomodulation of the number of chondrocyte proliferation, prevention of proteoglycan loss, and decrease of MMP-13 immunoexpression. Conclusion: This study showed that the 685-nm laser irradiation, especially at 10 J/cm2, prevented features related to the articular degenerative process in the knees of rats.
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