Uta Daisuke, Ishibashi Naoya, Kawase Yuki, Tao Shinichi, Sawahata Masahito, Kume Toshiaki
Department of Applied Pharmacology, Faculty of Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan.
Department of Applied Pharmacology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan.
J Clin Med. 2023 Aug 4;12(15):5126. doi: 10.3390/jcm12155126.
Photobiomodulation is an effective treatment for pain. We previously reported that the direct laser irradiation of the exposed sciatic nerve inhibited firing in the rat spinal dorsal horn evoked by mechanical stimulation, corresponding to the noxious stimulus. However, percutaneous laser irradiation is used in clinical practice, and it is unclear whether it can inhibit the firing of the dorsal horn. In this study, we investigated whether the percutaneous laser irradiation of the sciatic nerve inhibits firing. Electrodes were inserted into the lamina II of the dorsal horn, and mechanical stimulation was applied using von Frey filaments (vFFs) with both pre and post laser irradiation. Our findings show that percutaneous laser irradiation inhibited 26.0 g vFF-evoked firing, which corresponded to the noxious stimulus, but did not inhibit 0.6 g and 8.0 g vFF-evoked firing. The post- (15 min after) and pre-irradiation firing ratios were almost the same as those for direct and percutaneous irradiation. A photodiode sensor implanted in the sciatic nerve showed that the power density reaching the sciatic nerve percutaneously was attenuated to approximately 10% of that on the skin. The relationship between the laser intensity reaching the nerve and its effect could be potentially useful for a more appropriate setting of laser conditions in clinical practice.
光生物调节是一种有效的疼痛治疗方法。我们之前报道过,直接激光照射暴露的坐骨神经可抑制大鼠脊髓背角由机械刺激诱发的放电,这种刺激对应于伤害性刺激。然而,临床实践中使用的是经皮激光照射,目前尚不清楚它是否能抑制背角的放电。在本研究中,我们调查了经皮激光照射坐骨神经是否能抑制放电。将电极插入背角的Ⅱ层,并在激光照射前后使用von Frey细丝(vFFs)施加机械刺激。我们的研究结果表明,经皮激光照射抑制了对应于伤害性刺激的26.0 g vFF诱发的放电,但未抑制0.6 g和8.0 g vFF诱发的放电。照射后(照射后15分钟)和照射前的放电比率与直接照射和经皮照射的情况几乎相同。植入坐骨神经的光电二极管传感器显示,经皮到达坐骨神经的功率密度衰减至皮肤表面功率密度的约10%。到达神经的激光强度与其效果之间的关系可能有助于在临床实践中更合理地设置激光参数。