Nizamutdinov Damir, Ezeudu Chibueze, Wu Erxi, Huang Jason H, Yi S Stephen
Baylor Scott and White Health, Neuroscience Institute, Neurosurgery, TX, United States.
Texas A&M University, College of Medicine, Neurosurgery, TX, United States.
Front Pharmacol. 2022 Aug 8;13:965788. doi: 10.3389/fphar.2022.965788. eCollection 2022.
Light is a natural agent consisting of a range of visible and invisible electromagnetic spectrum travels in waves. Near-infrared (NIR) light refers to wavelengths from 800 to 2,500 nm. It is an invisible spectrum to naked eyes and can penetrate through soft and hard tissues into deep structures of the human body at specific wavelengths. NIR light may carry different energy levels depending on the intensity of emitted light and therapeutic spectrum (wavelength). Stimulation with NIR light can activate intracellular cascades of biochemical reactions with local short- and long-term positive effects. These properties of NIR light are employed in photobiomodulation (PBM) therapy, have been linked to treating several brain pathologies, and are attracting more scientific attention in biomedicine. Transcranial brain stimulations with NIR light PBM in recent animal and human studies revealed a positive impact of treatment on the progression and improvement of neurodegenerative processes, management of brain energy metabolism, and regulation of chronic brain inflammation associated with various conditions, including traumatic brain injury. This scientific overview incorporates the most recent cellular and functional findings in PBM with NIR light in treating neurodegenerative diseases, presents the discussion of the proposed mechanisms of action, and describes the benefits of this treatment in neuroprotection, cell preservation/detoxification, anti-inflammatory properties, and regulation of brain energy metabolism. This review will also discuss the novel aspects and pathophysiological role of the glymphatic and brain lymphatics system in treating neurodegenerative diseases with NIR light stimulations. Scientific evidence presented in this overview will support a combined effort in the scientific community to increase attention to the understudied NIR light area of research as a natural agent in the treatment of neurodegenerative diseases to promote more research and raise awareness of PBM in the treatment of brain disorders.
光是一种自然媒介,由一系列以波的形式传播的可见和不可见电磁光谱组成。近红外(NIR)光指波长在800至2500纳米之间的光。它是肉眼不可见的光谱,在特定波长下能够穿透软组织和硬组织进入人体深层结构。近红外光可能携带不同的能量水平,这取决于发射光的强度和治疗光谱(波长)。近红外光刺激可激活细胞内的生化反应级联,产生局部短期和长期的积极影响。近红外光的这些特性被应用于光生物调节(PBM)疗法,已与多种脑部疾病的治疗相关联,并且在生物医学领域正吸引着更多的科学关注。最近在动物和人体研究中使用近红外光PBM进行的经颅脑刺激显示,该治疗对神经退行性过程的进展和改善、脑能量代谢的管理以及与包括创伤性脑损伤在内的各种病症相关的慢性脑炎症的调节具有积极影响。本科学综述纳入了近红外光PBM在治疗神经退行性疾病方面最新的细胞和功能研究结果,讨论了所提出的作用机制,并描述了这种治疗在神经保护、细胞保存/解毒、抗炎特性以及脑能量代谢调节方面的益处。本综述还将讨论淋巴系统和脑淋巴管系统在近红外光刺激治疗神经退行性疾病中的新方面和病理生理作用。本综述中呈现的科学证据将支持科学界共同努力,提高对研究较少的近红外光研究领域的关注,该领域作为一种天然媒介可用于治疗神经退行性疾病,以促进更多研究并提高对PBM治疗脑部疾病的认识。