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体外光生物调节疗法对 50B11 感觉神经元的影响:评估细胞代谢、氧化应激、线粒体膜电位(MMP)和辣椒素诱导的钙离子流。

In vitro effects of photobiomodulation therapy on 50B11 sensory neurons: evaluation of cell metabolism, oxidative stress, mitochondrial membrane potential (MMP), and capsaicin-induced calcium flow.

机构信息

Institute for Maternal and Child Health, IRCCS Burlo Garofolo, Trieste, Italy.

Department of Medicine, Surgery and Health Sciences, University of Trieste, Trieste, Italy.

出版信息

J Biophotonics. 2021 Feb;14(2):e202000347. doi: 10.1002/jbio.202000347. Epub 2020 Nov 14.

Abstract

The analgesic properties of photobiomodulation therapy (PBMT) have been raising increasing interest in the clinical community due to the positive effects observed on patients, nevertheless the mechanistic basis of its action on peripheral sensory neurons remains still elusive. In this study, the effect of near-infrared (NIR) PBMT at 800 and 970 nm of wavelength was investigated on the 50B11 immortalized nociceptive sensory neuronal cell line by evaluating capsaicin-induced calcium flow and different markers correlated to mitochondria, that is, ATP, reactive oxygen species (ROS), and mitochondrial membrane potential (MMP). Calcium peak stimulated by capsaicin, the ligand of TRPV1 channel, was decreased in neurons pre-irradiated with the combination of the two wavelengths. Furthermore, delivering the 800 and 970 nm separately an increment of ATP, as well as MMP hyperpolarization were detected; notably, the 800 nm wavelength also increased ROS and O levels. Our findings, obtained on an in vitro model of nociception, show the positive effect of PBMT on two potential photo-targets of NIR light, namely the TRPV1 channel and the mitochondria.

摘要

由于观察到对患者的积极影响,光生物调节疗法 (PBMT) 的镇痛特性引起了临床界越来越多的兴趣,但 PBMT 对周围感觉神经元作用的机制基础仍然难以捉摸。在这项研究中,通过评估辣椒素诱导的钙流和与线粒体相关的不同标志物,即 ATP、活性氧 (ROS) 和线粒体膜电位 (MMP),研究了 800nm 和 970nm 近红外 (NIR) PBMT 对 50B11 永生化伤害感受感觉神经元细胞系的影响。TRPV1 通道配体辣椒素刺激的钙峰在两种波长联合辐照的神经元中减少。此外,单独输送 800nm 和 970nm 波长会检测到 ATP 和 MMP 超极化的增加;值得注意的是,800nm 波长还增加了 ROS 和 O 水平。我们在伤害感受的体外模型上获得的发现表明,PBMT 对 NIR 光的两个潜在光靶,即 TRPV1 通道和线粒体,具有积极作用。

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