Armand Aryna C, Bikaran Matin, Gardner Timothy B, Matthew Michael K
Geisel School of Medicine, Dartmouth College, Hanover, New Hampshire, USA.
Center for Digestive Health, Dartmouth Hitchcock Medical Center, Lebanon, New Hampshire, USA.
Int Wound J. 2025 May;22(5):e70243. doi: 10.1111/iwj.70243.
This systematic review evaluates the therapeutic effects of infrasound (1-20 Hz) and low-frequency audible sound (20 Hz-20 kHz) on wound healing, with a focus on cell migration, tissue regeneration, and bone repair. A comprehensive literature search across PubMed, Scopus, and Google Scholar was conducted to synthesise current data on these acoustic frequencies' impact on cellular functions. Key findings indicate that infrasound enhances bone growth and osteogenic differentiation of bone marrow stem cells, significantly accelerating fracture healing by increasing bone mineral density. Low-frequency sound at 100 Hz promotes fibroblast migration and alters cell morphology through actin restructuring, with effects varying by horizontal versus vertical vibrations. Additionally, frequencies of 10 and 20 kHz stimulate epidermal wound healing in mice by activating keratinocyte functions. These results highlight the potential of specific acoustic frequencies as non-invasive, cost-effective wound treatment options, particularly for bone regeneration and chronic wounds. Further research is recommended to refine acoustic parameters and validate clinical applications to establish therapeutic protocols.
本系统评价评估了次声(1-20赫兹)和低频可听声(20赫兹-20千赫)对伤口愈合的治疗效果,重点关注细胞迁移、组织再生和骨修复。通过在PubMed、Scopus和谷歌学术上进行全面的文献检索,以综合当前关于这些声频对细胞功能影响的数据。主要研究结果表明,次声可促进骨髓干细胞的骨生长和成骨分化,通过增加骨矿物质密度显著加速骨折愈合。100赫兹的低频声音可促进成纤维细胞迁移,并通过肌动蛋白重组改变细胞形态,其效果因水平振动与垂直振动而异。此外,10千赫和20千赫的频率通过激活角质形成细胞功能刺激小鼠表皮伤口愈合。这些结果凸显了特定声频作为非侵入性、经济有效的伤口治疗选择的潜力,特别是对于骨再生和慢性伤口。建议进一步研究以优化声学参数并验证临床应用,从而建立治疗方案。