Dr. Neher's Biophysics Laboratory for Innovative Drug Discovery, State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Macao; Department of Orthopedics, The Affiliated Traditional Chinese Medicine Hospital, Southwest Medical University, Luzhou, Sichuan 646600, China.
Dr. Neher's Biophysics Laboratory for Innovative Drug Discovery, State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Macao; Department of Vascular Surgery, The Affiliated Hospital, Southwest Medical University, Luzhou, Sichuan 646600, China.
Pharmacol Res. 2024 Oct;208:107349. doi: 10.1016/j.phrs.2024.107349. Epub 2024 Aug 14.
In future regenerative medicine, far-infrared radiation (FIR) may be an essential component of optical therapy. Many studies have confirmed or validated the efficacy and safety of FIR in various diseases, benefiting from new insights into FIR mechanisms and the excellent performance of many applications. However, the lack of consensus on the biological effects and therapeutic parameters of FIR limits its practical applications in the clinic. In this review, the definition, characteristics, and underlying principles of the FIR are systematically illustrated. We outline the therapeutic parameters of FIR, including the wavelength range, power density, irradiation time, and distance. In addition, the biological effects, potential molecular mechanisms, and preclinical and clinical applications of FIR are discussed. Furthermore, the future development and applications of FIR are described in this review. By applying optimal therapeutic parameters, FIR can influence various cells, animal models, and patients, eliciting diverse underlying mechanisms and offering therapeutic potential for many diseases. FIR could represent a superior alternative with broad prospects for application in future regenerative medicine.
在未来的再生医学中,远红外线(FIR)可能成为光疗的重要组成部分。许多研究已经证实或验证了 FIR 在各种疾病中的疗效和安全性,这得益于对 FIR 机制的新认识和许多应用的优异性能。然而,由于缺乏对 FIR 的生物学效应和治疗参数的共识,限制了其在临床中的实际应用。在这篇综述中,系统地阐述了 FIR 的定义、特性和基本原理。我们概述了 FIR 的治疗参数,包括波长范围、功率密度、辐照时间和距离。此外,还讨论了 FIR 的生物学效应、潜在的分子机制以及 FIR 的临床前和临床应用。此外,还描述了 FIR 的未来发展和应用。通过应用最佳的治疗参数,FIR 可以影响各种细胞、动物模型和患者,引发不同的潜在机制,并为许多疾病提供治疗潜力。FIR 可能是一种更优的选择,具有广阔的应用前景,有望在未来的再生医学中得到应用。