Masante Beatrice, Gabetti Stefano, Silva Joao C, Putame Giovanni, Israel Simone, Bignardi Cristina, Massai Diana
Department of Mechanical and Aerospace Engineering and PolitoBIOMed Lab, Politecnico di Torino, Turin, Italy.
Interuniversity Center for the Promotion of the 3Rs Principles in Teaching and Research, Turin, Italy.
Front Bioeng Biotechnol. 2025 Jul 10;13:1557572. doi: 10.3389/fbioe.2025.1557572. eCollection 2025.
Bone fractures and cartilage pathologies represent a heavy socioeconomic burden for the national healthcare systems worldwide. Pulsed electromagnetic field (PEMF) stimulation has become a widely recognized treatment for enhancing bone fracture healing and reducing tissue inflammation, thereby supporting bone tissue regeneration. More recently, its effectiveness in treating cartilage degeneration and osteoarthritis has also been demonstrated. However, the effects of PEMF, particularly the underlying mechanisms related to the activation of specific signaling pathways, are not yet fully known neither correlated with the specific PEMF parameters applied. As a result, standardized protocols for PEMF treatment are lacking in clinical practice, leading to empirical application of PEMF stimulation and heterogeneity in treatment protocols. For these reasons, over the past three decades, the biological effects of PEMF on bone and cartilage tissues have been extensively investigated through both and experiments. The aim of this review is to provide a detailed overview of the performed studies, focusing on the applied PEMF stimulation parameters and the induced effects on bone and cartilage tissues. Furthermore, to enable comparisons across various published protocols and to aid in understanding the correlation between applied PEMF parameters and their resulting biological effects, we propose, for the first time, a quantitative descriptor for PEMF stimulation, termed PEMF dose, which accounts for magnetic field intensity, stimulation waveform, and exposure duration. The use of this comprehensive descriptor enabled the identification of common features across different studies and, in the future, it could serve as a valuable tool for refining PEMF stimulation protocols and establishing standardized guidelines to support bone and cartilage repair.
骨折和软骨病变给全球各国的医疗保健系统带来了沉重的社会经济负担。脉冲电磁场(PEMF)刺激已成为一种广泛认可的治疗方法,可促进骨折愈合并减轻组织炎症,从而支持骨组织再生。最近,其在治疗软骨退变和骨关节炎方面的有效性也得到了证实。然而,PEMF的作用,特别是与特定信号通路激活相关的潜在机制,尚未完全明确,也与所应用的特定PEMF参数无关。因此,临床实践中缺乏PEMF治疗的标准化方案,导致PEMF刺激的经验性应用和治疗方案的异质性。出于这些原因,在过去三十年中,通过体外和体内实验对PEMF对骨和软骨组织的生物学效应进行了广泛研究。本综述的目的是详细概述已开展的研究,重点关注所应用的PEMF刺激参数以及对骨和软骨组织的诱导效应。此外,为了能够对各种已发表的方案进行比较,并有助于理解所应用的PEMF参数与其产生的生物学效应之间的相关性,我们首次提出了一种用于PEMF刺激的定量描述符,称为PEMF剂量,它考虑了磁场强度、刺激波形和暴露持续时间。使用这种综合描述符能够识别不同研究中的共同特征,并且在未来,它可以作为完善PEMF刺激方案和建立支持骨和软骨修复的标准化指南的有价值工具。