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脉冲电磁场治疗对大鼠骨质疏松症模型的体内影响。

Effect of the Pulsed Electromagnetic Field Treatment in a Rat Model of Senile Osteoporosis In Vivo.

机构信息

Department of Rehabilitation, Rehabilitation Medicine Center, Rehabilitation Laboratory, The First Affiliated Hospital, Hengyang Medical School, University of South China, Hengyang, China.

出版信息

Bioelectromagnetics. 2022 Oct;43(7):438-447. doi: 10.1002/bem.22423. Epub 2022 Nov 20.

DOI:10.1002/bem.22423
PMID:36403258
Abstract

This study assessed the effects of pulsed electromagnetic fields (PEMF) in a rat model of senile osteoporosis and the underlying molecular events. 24-month-old male Sprague-Dawley (SD) rats were randomly divided into control and PEMF groups (n = 8 per group) using a random digit table, while 3-month-old male SD rats were set as the young-age control group. Rats in the PEMF group were treated by PEMF for 40 min/day for 5 days/week. Bone mineral density/microarchitecture, level of serum bone-specific alkaline phosphatase (BALP), tartrate-resistant acid phosphatase 5b (TRACP5b), and Wnt/β-catenin signaling genes in rat bone marrow cells were then analyzed. The 12-week PEMF intervention showed a significant effect on inhibition of age-induced bone density loss and deterioration of trabecular bone structures in the PEMF group rats versus control rats, that is, the treatment enhanced bone mineral density of the proximal femoral metaphysis and the fifth lumbar (L5) vertebral body and improved the proximal tibia and L4 vertebral body parameters using bone histomorphometry analysis. Furthermore, the BALP level in the bones was significantly increased, but the TRACP5b level was reduced in the PEMF group of rats versus control rats. PEMF also dramatically upregulated expression of Wnt3a, LRP5, β-catenin, and Runx2 but downregulated PPAR-γ expression in the aged rats. The results demonstrated that PEMF could prevent bone loss and architectural deterioration due to the improvement of bone marrow mesenchymal stromal cell differentiation and proliferation abilities and activating the Wnt signaling pathway. Future clinical studies are needed to validate these findings. © 2022 Bioelectromagnetics Society.

摘要

这项研究评估了脉冲电磁场(PEMF)在衰老性骨质疏松症大鼠模型中的作用及其潜在的分子事件。24 月龄雄性 Sprague-Dawley(SD)大鼠采用随机数字表法随机分为对照组和 PEMF 组(每组 8 只),3 月龄雄性 SD 大鼠设为青年对照组。PEMF 组大鼠接受 PEMF 治疗,每天 40 分钟,每周 5 天。然后分析大鼠骨髓细胞中骨矿物质密度/微结构、血清骨特异性碱性磷酸酶(BALP)、抗酒石酸酸性磷酸酶 5b(TRACP5b)水平以及 Wnt/β-连环蛋白信号基因。12 周的 PEMF 干预对抑制年龄引起的骨密度降低和 PEMF 组大鼠与对照组大鼠的小梁骨结构恶化有显著作用,即治疗增强了股骨近端干骺端和第 5 腰椎(L5)椎体的骨矿物质密度,并通过骨组织形态计量学分析改善了胫骨近端和 L4 椎体的参数。此外,与对照组相比,PEMF 组大鼠骨骼中的 BALP 水平显著升高,而 TRACP5b 水平降低。PEMF 还显著上调了 Wnt3a、LRP5、β-连环蛋白和 Runx2 的表达,而下调了老年大鼠中 PPAR-γ 的表达。结果表明,PEMF 可以通过改善骨髓间充质基质细胞的分化和增殖能力以及激活 Wnt 信号通路来预防骨丢失和结构恶化。需要进行未来的临床研究来验证这些发现。

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