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毫米波对固定膝关节大鼠模型预防关节僵硬的作用。

Effects of millimeter-wave for preventing joint stiffness in the immobilized knee rat model.

机构信息

Department of Acupuncture and Massage, Sichuan College of Traditional Chinese Medicine, Mian-yang 621000, Sichuan, China; Department of Rehabilitation, Mian-yang Orthopedic Hospital, Mian-yang 621000, Sichuan, China.

Department of Acupuncture and Massage, Sichuan College of Traditional Chinese Medicine, Mian-yang 621000, Sichuan, China.

出版信息

Knee. 2023 Jun;42:236-245. doi: 10.1016/j.knee.2023.03.019. Epub 2023 Apr 21.

Abstract

AIM

To explore the effects and mechanism of millimeter-wave treatment on the development of joint stiffness in the immobilized knee rat model.

METHODS

Twenty-four Sprague-Dawley (SD) rats were randomly divided into the control group (O, n = 8), the surgical control group (OC, n = 8), and the millimeter-wave treatment group (MO, n = 8). After immobilized knee modeling, the knee mobility and quadriceps diameter was measured at the 6th week. Hematoxylin and eosin and Masson staining were performed to detect the pathology and fibrous lesions of the knee joint. Furthermore, the expression of TGF-β1 and Collagen I was quantified by immunohistochemical assay in the knee capsule, and Western blotting was performed to quantify the protein expression of NF-κB and MuRF1 in skeletal muscle.

RESULTS

Compared with the O group, knee mobility, and quadriceps diameter was decreased (P < 0.01), and articular capsule fibrosis and quadriceps atrophy occurred in all rats with fixed knee joints. Compared with the OC group, millimeter-wave treatment significantly increased articular mobility and the quadriceps diameter; and improved the fibrotic lesions of the joint capsule and quadriceps atrophy. Moreover, levels of TGF-β1, Collagen I, and MuRF1 were upregulated (P < 0.01) by knee immobilization, and collagen fiber content in the articular capsule was also increased (P < 0.01). However, millimeter-wave treatment reversed it. The most noteworthy result was that NF-κB expression was not significantly different in all groups.

CONCLUSION

Millimeter-wave treatment reversed joint contracture and quadriceps atrophy caused by joint fixation, inhibited TGF-β1 and Collagen I protein expression of the joint capsule and reduced MuRF1 expression of the quadriceps muscle, thereby inhibiting the development of joint stiffness.

摘要

目的

探讨毫米波治疗对固定膝关节大鼠模型关节僵硬发展的影响及其机制。

方法

24 只 Sprague-Dawley(SD)大鼠随机分为对照组(O 组,n=8)、手术对照组(OC 组,n=8)和毫米波治疗组(MO 组,n=8)。造模固定膝关节后,于第 6 周测量膝关节活动度和股四头肌直径。行苏木精-伊红(HE)及马松(Masson)染色观察膝关节病理及纤维性病变,免疫组化法检测膝关节囊中 TGF-β1、Collagen I 的表达,Western blot 法检测骨骼肌中 NF-κB、MuRF1 的蛋白表达。

结果

与 O 组相比,所有固定膝关节大鼠的膝关节活动度和股四头肌直径均降低(P<0.01),且关节囊纤维化和股四头肌萎缩;与 OC 组相比,毫米波治疗组显著增加了关节活动度和股四头肌直径,改善了关节囊纤维化和股四头肌萎缩病变;同时,TGF-β1、Collagen I 和 MuRF1 水平升高(P<0.01),关节囊胶原纤维含量增加(P<0.01),而毫米波治疗组则逆转了这一变化。最值得注意的是,各组 NF-κB 表达均无显著差异。

结论

毫米波治疗可逆转关节固定引起的关节挛缩和股四头肌萎缩,抑制关节囊 TGF-β1 和 Collagen I 蛋白表达,减少股四头肌 MuRF1 表达,从而抑制关节僵硬的发展。

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