Department of Medical Rehabilitation, Faculty of Health Sciences, Medical University of Lodz, 251 Pomorska St, Lodz, 92-213, Poland.
Department of Microbiology, Genetics and Experimental Immunology, Lodz Centre of Molecular Studies on Civilisation Diseases, Medical University of Lodz, Lodz, 92-215, Poland.
Sci Rep. 2024 Oct 4;14(1):23111. doi: 10.1038/s41598-024-74533-y.
Research into the efficacy of photobiomodulation therapy (PBMT) in reducing inflammation has been ongoing for years, but standards for irradiation methodology still need to be developed. This study aimed to test whether PBMT stimulates in vitro human peripheral blood mononuclear cells (PBMCs) to synthesize pro-inflammatory cytokines, including chemokines. PBMCs were irradiated with laser radiation at two wavelengths simultaneously (λ = 808 nm in continuous emission and λ = 905 nm in pulsed emission). The laser radiation energy was dosed in one dose as a whole (5 J, 15 J, 20 J) or in a fractionated way (5 J + 15 J and 15 J + 5 J) with a frequency of 500, 1,500 and 2,000 Hz. The surface power densities were 177, 214 and 230 mW/cm, respectively. A pro-inflammatory effect was observed at both the transcript and protein levels for IL-1β after PBMT at the energy doses 5 J and 20 J (ƒ=500 Hz) and only at the transcript level after application of PBMT at energy doses of 20 J (ƒ= 1,500; ƒ=2,000 Hz) and 5 + 15 J (ƒ=500 Hz). An increase in CCL2 and CCL3 mRNA expression was observed after PBMT at 5 + 15 J (ƒ=1,500 Hz) and 15 + 5 J (ƒ=2,000 Hz) and CCL3 concentration after application of an energy dose of 15 J (frequency of 500 Hz). Even though PBMT can induce mRNA synthesis and stimulate PBMCs to produce selected pro-inflammatory cytokines and chemokines, it is necessary to elucidate the impact of the simultaneous emission of two wavelengths on the inflammatory response mechanisms.
多年来,一直有研究在进行,以探索光生物调节疗法(PBMT)在减轻炎症方面的疗效,但仍需要制定辐照方法的标准。本研究旨在测试 PBMT 是否会刺激体外人外周血单核细胞(PBMC)合成促炎细胞因子,包括趋化因子。用两种波长的激光辐射同时辐照 PBMC(连续发射的 λ=808nm 和脉冲发射的 λ=905nm)。激光辐射能量以单次剂量(5J、15J、20J)或分次剂量(5J+15J 和 15J+5J)给予,频率为 500、1500 和 2000Hz。表面功率密度分别为 177、214 和 230mW/cm。在能量剂量为 5J 和 20J(ƒ=500Hz)进行 PBMT 后,IL-1β 在转录和蛋白水平上均观察到促炎作用,而仅在能量剂量为 20J(ƒ=1500Hz;ƒ=2000Hz)和 5+15J(ƒ=500Hz)进行 PBMT 后观察到转录水平上的促炎作用。在 5+15J(ƒ=1500Hz)和 15+5J(ƒ=2000Hz)进行 PBMT 后观察到 CCL2 和 CCL3mRNA 表达增加,在应用 15J 能量剂量(频率为 500Hz)后观察到 CCL3 浓度增加。尽管 PBMT 可以诱导 mRNA 合成,并刺激 PBMC 产生选定的促炎细胞因子和趋化因子,但仍有必要阐明同时发射两种波长对炎症反应机制的影响。