Clinical Research Unit, 5th Department of Internal Medicine, Faculty of Medicine, Comenius University, University Hospital Bratislava, Bratislava, Slovak Republic.
Department of Nuclear Physics and Biophysics, Faculty of Mathematics, Physics, and Informatics, Comenius University Bratislava, Bratislava, Slovak Republic.
Photodermatol Photoimmunol Photomed. 2023 Jan;39(1):3-15. doi: 10.1111/phpp.12799. Epub 2022 May 21.
Up to 33% of the general population worldwide suffer musculoskeletal conditions, with low back pain being the single leading cause of disability globally. Multimodal therapeutic options are available to relieve the pain associated with muscular disorders, including physical, complementary, and pharmacological therapies. However, existing interventions are not disease modifying and have several limitations.
Literature review.
In this context, the use of nonthermal infrared light delivered via patches, fabrics, and garments containing infrared-emitting bioceramic minerals have been investigated. Positive effects on muscular cells, muscular recovery, and reduced inflammation and pain have been reported both in preclinical and clinical studies. There are several hypotheses on how infrared may contribute to musculoskeletal pain relief, however, the full mechanism of action remains unclear. This article provides an overview of the physical characteristics of infrared radiation and its biological effects, focusing on those that could potentially explain the mechanism of action responsible for the relief of musculoskeletal pain.
Based on the current evidence, the following pathways have been considered: upregulation of endothelial nitric oxide synthase, increase in nitric oxide bioavailability, anti-inflammatory effects, and reduction in oxidative stress.
全球多达 33%的人群患有肌肉骨骼疾病,下背痛是全球导致残疾的单一首要原因。有多种治疗方法可缓解与肌肉紊乱相关的疼痛,包括物理、补充和药理学治疗。然而,现有的干预措施并不能改变疾病进程,而且存在多种局限性。
文献回顾。
在这种情况下,已经研究了通过含有红外发射生物陶瓷矿物质的贴片、织物和服装来提供非热红外光。临床前和临床研究均报道了其对肌肉细胞、肌肉恢复以及炎症和疼痛减轻的积极影响。关于红外线如何有助于缓解肌肉骨骼疼痛有几种假设,但作用机制仍不清楚。本文概述了红外辐射的物理特性及其生物学效应,重点介绍了可能解释缓解肌肉骨骼疼痛的作用机制的那些特性。
基于现有证据,考虑了以下途径:内皮型一氧化氮合酶的上调、一氧化氮生物利用度的增加、抗炎作用和氧化应激的减少。