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低强度脉冲超声通过调节炎症免疫微环境促进骨骼肌再生。

Low-intensity pulsed ultrasound promotes skeletal muscle regeneration via modulating the inflammatory immune microenvironment.

机构信息

Department of Rehabilitation Medicine, Huashan Hospital, Fudan University, Shanghai, China.

Department of Sports Medicine, Huashan Hospital, Fudan University, Shanghai, China.

出版信息

Int J Biol Sci. 2023 Feb 5;19(4):1123-1145. doi: 10.7150/ijbs.79685. eCollection 2023.

Abstract

Low-intensity pulsed ultrasound (LIPUS, a form of mechanical stimulation) can promote skeletal muscle functional repair, but a lack of mechanistic understanding of its relationship and tissue regeneration limits progress in this field. We investigated the hypothesis that specific energy levels of LIPUS mediates skeletal muscle regeneration by modulating the inflammatory microenvironment. To address these gaps, LIPUS irritation was applied in for 5 min at two different intensities (30mW/cm and 60mW/cm) in next 7 consecutive days, and the treatment begun at 24h after air drop-induced contusion injury. In vitro experiments, LIPUS irritation was applied at three different intensities (30mW/cm, 45mW/cm, and 60mW/cm) for 2 times 24h after introduction of LPS in RAW264.7. Then, we comprehensively assessed the functional and histological parameters of skeletal muscle injury in mice and the phenotype shifting in macrophages through molecular biological methods and immunofluorescence analysis both and . We reported that LIPUS therapy at intensity of 60mW/cm exhibited the most significant differences in functional recovery of contusion-injured muscle in mice. The comprehensive functional tests and histological analysis indirectly and directly proved the effectiveness of LIPUS for muscle recovery. Through biological methods and immunofluorescence analysis both and , we found that this improvement was attributable in part to the clearance of M1 macrophages populations and the increase in M2 subtypes with the change of macrophage-mediated factors. Depletion of macrophages eliminated the therapeutic effects of LIPUS, indicating that improvement in muscle function was the result of M2-shifted macrophage polarization. Moreover, the M2-inducing effects of LIPUS were proved partially through the WNT pathway by upregulating FZD5 expression and enhancing β-catenin nuclear translocation in macrophages both and . The inhibition and augment of WNT pathway further verified our results. LIPUS at intensity of 60mW/cm could significantly promoted skeletal muscle regeneration through shifting macrophage phenotype from M1 to M2. The ability of LIPUS to direct macrophage polarization may be a beneficial target in the clinical treatment of many injuries and inflammatory diseases.

摘要

低强度脉冲超声(LIPUS,一种机械刺激形式)可促进骨骼肌功能修复,但由于缺乏对其与组织再生关系的机制理解,限制了该领域的进展。我们假设 LIPUS 的特定能量水平通过调节炎症微环境来介导骨骼肌再生。为了解决这些差距,在空气滴诱导挫伤损伤后 24 小时开始,在接下来的 7 天内每天两次以两种不同强度(30mW/cm 和 60mW/cm)应用 LIPUS 刺激 5 分钟。在体外实验中,在 RAW264.7 中引入 LPS 后 24 小时,以三种不同强度(30mW/cm、45mW/cm 和 60mW/cm)应用 LIPUS 刺激两次。然后,我们通过分子生物学方法和免疫荧光分析全面评估了小鼠骨骼肌损伤的功能和组织学参数,以及 和 中的巨噬细胞表型转变。我们报道,在小鼠挫伤损伤肌肉的功能恢复方面,60mW/cm 强度的 LIPUS 治疗显示出最显著的差异。全面的功能测试和组织学分析间接和直接证明了 LIPUS 对肌肉恢复的有效性。通过生物学方法和免疫荧光分析,我们发现这种改善部分归因于 M1 巨噬细胞群的清除和巨噬细胞介导因子变化导致的 M2 亚型增加。巨噬细胞耗竭消除了 LIPUS 的治疗效果,表明肌肉功能的改善是 M2 向巨噬细胞极化的结果。此外,通过上调巨噬细胞中 FZD5 的表达和增强 β-连环蛋白核转位,LIPUS 部分通过 WNT 通路证明了对 M2 的诱导作用,这在 和 中均有证实。WNT 通路的抑制和增强进一步验证了我们的结果。60mW/cm 强度的 LIPUS 可通过将巨噬细胞表型从 M1 转变为 M2 来显著促进骨骼肌再生。LIPUS 引导巨噬细胞极化的能力可能是许多损伤和炎症性疾病临床治疗的有益靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20c4/10008697/f37bbb754090/ijbsv19p1123g001.jpg

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