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发光二极管介导的光生物调节对小鼠模型肌腱愈合的疗效

Efficacy of Light-Emitting Diode-Mediated Photobiomodulation in Tendon Healing in a Murine Model.

作者信息

Lim Jae Kyung, Kim Jae Ho, Park Gyu Tae, Woo Seung Hun, Cho Minkyoung, Kang Suk Woong

机构信息

Department of Physiology, School of Medicine, Pusan National University, Yangsan 50612, Republic of Korea.

Department of Orthopedics, Research Institute for Convergence of Biomedical Science and Technology, Pusan National University Yangsan Hospital, School of Medicine, Pusan National University, Yangsan 56012, Republic of Korea.

出版信息

Int J Mol Sci. 2025 Mar 4;26(5):2286. doi: 10.3390/ijms26052286.

Abstract

The application of light-emitting diode (LED)-dependent photobiomodulation (PBM) in promoting post-tendon injury healing has been recently reported. Despite establishing a theoretical basis for ligament restoration through PBM, identifying effective LED wavelength combinations and ensuring safety in animal models remain unresolved challenges. In our previous study, we demonstrated that combined irradiation at 630 nm and 880 nm promotes cell proliferation and migration, which are critical processes during the early stage of tendon healing in human-derived tendon fibroblasts. Based on this, we hypothesized that 630/880 nm LED-based PBM might promote rapid healing during the initial phase of tendon healing, and we aimed to analyze the results after PBM treatment in a murine model. Migration kinetics were analyzed at two specific wavelengths: 630 and 880 nm. The Achilles tendon in the hind limbs of Balb/c mice was severed by Achilles tendon transection. Subsequently, the mice were randomized into LED non-irradiation and LED irradiation groups. Mice with intact tendons were employed as healthy controls. The total number of mice was 13 for the healthy and injured groups and 14 for the LED-irradiated injured group, and the data presented in this manuscript were obtained from one representative experiment ( = 4-5 per group). The wounds were LED-irradiated for 20 min daily for two days. Histological properties, tendon healing mediators, and inflammatory mediators were screened on day 14. The roundness of the nuclei and fiber structure, indicating the degree of infiltrated inflammatory cells and severity of fiber fragmentation, respectively, were lower in the LED irradiation group than in the LED non-irradiation group. Immunohistochemical analysis depicted an increase in tenocytes (SCX cells) and recovery of wounds with reduced fibrosis (lower collagen 3 and TGF-β1) in the LED irradiation group during healing; conversely, the LED non-irradiation group exhibited tissue fibrosis. Overall, the ratio of M2 macrophages to total macrophages in the LED irradiation group was higher than that in the injured group. LED-based PBM in the Achilles tendon rupture murine model facilitated a rapid restoration of histological and immunochemical outcomes. These findings suggest that LED-based PBM presents remarkable potential as an adjunct therapeutic approach for tendon healing and warrants further research to standardize various parameters to advance and establish it as a reliable treatment regimen.

摘要

最近有报道称,基于发光二极管(LED)的光生物调节作用(PBM)在促进肌腱损伤后愈合方面的应用。尽管通过PBM为韧带修复奠定了理论基础,但确定有效的LED波长组合以及确保动物模型中的安全性仍是未解决的挑战。在我们之前的研究中,我们证明630 nm和880 nm的联合照射可促进细胞增殖和迁移,这是人源肌腱成纤维细胞肌腱愈合早期的关键过程。基于此,我们假设基于630/880 nm LED的PBM可能会促进肌腱愈合初始阶段的快速愈合,并且我们旨在分析在小鼠模型中进行PBM治疗后的结果。在两个特定波长630和880 nm处分析迁移动力学。通过跟腱横断切断Balb/c小鼠后肢的跟腱。随后,将小鼠随机分为LED未照射组和LED照射组。将肌腱完整的小鼠用作健康对照。健康组和损伤组的小鼠总数为13只,LED照射损伤组为14只,本手稿中呈现的数据来自一个代表性实验(每组=4-5只)。伤口每天进行LED照射20分钟,持续两天。在第14天筛选组织学特性、肌腱愈合介质和炎症介质。LED照射组中分别指示炎性细胞浸润程度和纤维断裂严重程度的细胞核圆度和纤维结构,均低于LED未照射组。免疫组织化学分析显示,在愈合过程中,LED照射组的肌腱细胞(SCX细胞)增加,伤口恢复,纤维化减少(胶原蛋白3和转化生长因子-β1降低);相反,LED未照射组出现组织纤维化。总体而言,LED照射组中M2巨噬细胞与总巨噬细胞的比例高于损伤组。跟腱断裂小鼠模型中基于LED的PBM促进了组织学和免疫化学结果的快速恢复。这些发现表明,基于LED的PBM作为肌腱愈合的辅助治疗方法具有显著潜力,值得进一步研究以规范各种参数,从而推进并将其确立为可靠的治疗方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/370e/11899806/412132e39f49/ijms-26-02286-g001.jpg

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