Photobiomodulation for Major Depressive Disorder: Linking Transcranial Infrared Light, Biophotons and Oxidative Stress.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Willians Fernando Vieira, Maia Gersten, Marco Antonio Knob Caldieraro, Paolo Cassano
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引用次数: 1

Abstract

Abstract: Incompletely treated major depressive disorder (MDD) poses an enormous global health burden. Conventional treatment for MDD consists of pharmacotherapy and psychotherapy, though a significant number of patients do not achieve remission with such treatments. Transcranial photobiomodulation (t-PBM) is a promising novel therapy that uses extracranial light, especially in the near-infrared (NIR) and red spectra, for biological and therapeutic effects. The aims of this Review are to evaluate the current clinical and preclinical literature on t-PBM in MDD and to discuss candidate mechanisms for effects of t-PBM in MDD, with specific attention to biophotons and oxidative stress. A search on PubMed and ClinicalTrials.gov identified clinical and preclinical studies using t-PBM for the treatment of MDD as a primary focus. After a systematic screening, only 19 studies containing original data were included in this review (9 clinical and 10 preclinical trials). Study results demonstrate consensus that t-PBM is a safe and potentially effective treatment; however, varying treatment parameters among studies complicate definitive conclusions about efficacy. Among other mechanisms of action, t-PBM stimulates the complex IV of the mitochondrial respiratory chain and induces an increase in cellular energy metabolism. We suggest that future trials include biological measures to better understand the mechanisms of action of t-PBM and to optimize treatment efficiency. Of particular interest going forward will be studying potential effects of t-PBM-an external light source on the NIR spectra-on neural circuitry implicated in depression.

重度抑郁症的光生物调节:经颅红外光、生物光子和氧化应激的联系。
摘要:未完全治疗的重度抑郁症(MDD)造成了巨大的全球健康负担。重度抑郁症的传统治疗包括药物治疗和心理治疗,尽管有相当多的患者没有通过这些治疗获得缓解。经颅光生物调节(t-PBM)是一种很有前途的新型治疗方法,它利用颅外光,特别是近红外(NIR)和红色光谱,来达到生物学和治疗效果。本综述的目的是评估目前关于t-PBM在MDD中的临床和临床前文献,并讨论t-PBM在MDD中的作用的候选机制,特别关注生物光子和氧化应激。在PubMed和ClinicalTrials.gov上的搜索发现,临床和临床前研究将t-PBM作为治疗重度抑郁症的主要焦点。经过系统筛选,本综述仅纳入19项包含原始数据的研究(9项临床试验和10项临床前试验)。研究结果表明,t-PBM是一种安全且潜在有效的治疗方法;然而,研究中不同的治疗参数使关于疗效的明确结论复杂化。在其他作用机制中,t-PBM刺激线粒体呼吸链复合体IV,诱导细胞能量代谢增加。我们建议未来的试验包括生物学测量,以更好地了解t-PBM的作用机制,并优化治疗效率。未来特别感兴趣的将是研究t- pbm(一种近红外光谱的外部光源)对与抑郁症有关的神经回路的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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