Guillaume Blivet, François J Roman, Benjamin Lelouvier, Céline Ribière, Jacques Touchon
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引用次数: 0
摘要
阿尔茨海默病(AD)中脑-肠相互关联的证据为治疗这种尚无明确疗法的病症开辟了新的途径。肠道微生物群和细菌转位可能会产生外周炎症和免疫调节,导致脑淀粉样变性、神经变性和认知障碍。肠道微生物群可作为治疗 AD 的潜在靶点。特别是,光生物调节(PBM)可以影响微生物群与免疫系统之间的相互作用,为其在与AD相关的菌群失调中的恢复特性提供了潜在的解释。光调节疗法是一种安全、非侵入性、非电离、非热疗法,它使用红光或近红外线刺激线粒体电子传递链的终端酶--细胞色素 c 氧化酶(CCO,复合体 IV),从而促进三磷酸腺苷的合成。将 PBM 直接应用于头部和腹部,并通过同时应用于腹部进行全身治疗,针对这一高度复杂病理的不同组成部分,提供了一种创新的 AD 治疗方法。作为一种假设,PBM 可能会在治疗 AD 的治疗方案中发挥重要作用。
Photobiomodulation Therapy: A Novel Therapeutic Approach to Alzheimer's Disease Made Possible by the Evidence of a Brain-Gut Interconnection.
The evidence of brain-gut interconnections in Alzheimer's disease (AD) opens novel avenues for the treatment of a pathology for which no definitive treatment exists. Gut microbiota and bacterial translocation may produce peripheral inflammation and immune modulation, contributing to brain amyloidosis, neurodegeneration, and cognitive deficits in AD. The gut microbiota can be used as a potential therapeutic target in AD. In particular, photobiomodulation (PBM) can affect the interaction between the microbiota and the immune system, providing a potential explanation for its restorative properties in AD-associated dysbiosis. PBM is a safe, non-invasive, non-ionizing, and non-thermal therapy that uses red or near-infrared light to stimulate the cytochrome c oxidase (CCO, complex IV), the terminal enzyme of the mitochondrial electron transport chain, resulting in adenosine triphosphate synthesis. The association of the direct application of PBM to the head with an abscopal and a systemic treatment through simultaneous application to the abdomen provides an innovative therapeutic approach to AD by targeting various components of this highly complex pathology. As a hypothesis, PBM might have a significant role in the therapeutic options available for the treatment of AD.
期刊介绍:
JIN is an international peer-reviewed, open access journal. JIN publishes leading-edge research at the interface of theoretical and experimental neuroscience, focusing across hierarchical levels of brain organization to better understand how diverse functions are integrated. We encourage submissions from scientists of all specialties that relate to brain functioning.