State Key Laboratory of Characteristic Chinese Drug Resources in Southwest China, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.
State key Laboratory of Innovation Medicine and High Efficiency and Energy Saving Pharmaceutical Equipment, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China.
Pharmacol Res. 2022 May;179:106189. doi: 10.1016/j.phrs.2022.106189. Epub 2022 Mar 21.
Recently, comparative studies have rapidly increased with the closer correlation between microbiota and neurological diseases. However, most insights about the association between microbiota and neurological diseases still focus on the gut-brain axis and ignore that nasal microbiota could form a complex and essential link with the nervous system via the nose-to-brain pathway, suggesting the role in modulating the immune system, metabolic system, and nervous system development, which influence the physiopathology of neurological diseases. Due to the complex interactions between nasal microbiota and the brain, the nasal microbiota may have a particular pathogenic effect and therapeutic potential on neurological diseases. Therefore, this review aims to deeply analyze the dual effects of nasal microbiota on neurological diseases, focusing on pathogenic and therapeutic effects to provide a new perspective for preventing and treating neurological diseases by altering nasal microbiota. This review concludes the bidirectional effects of nasal microbiota on neurological diseases, including the pathogenicity and potential treatment on Alzheimer's disease, Parkinson's disease, Multiple sclerosis, and Stroke. Furthermore, modern medical technology combined with artificial intelligence, including implantable sensors, modeling software, and nanofluid techniques, may further study the complex effects between nasal microbiota and the brain, thereby providing new options for treating neurological diseases.
最近,随着微生物组与神经疾病之间的相关性越来越密切,比较研究迅速增加。然而,大多数关于微生物组与神经疾病之间关联的见解仍集中在肠-脑轴上,忽略了鼻腔微生物组通过鼻-脑途径与神经系统形成复杂而重要的联系,提示其在调节免疫系统、代谢系统和神经系统发育方面的作用,从而影响神经疾病的病理生理学。由于鼻腔微生物组与大脑之间的复杂相互作用,鼻腔微生物组可能对神经疾病具有特定的致病作用和治疗潜力。因此,本综述旨在深入分析鼻腔微生物组对神经疾病的双重影响,重点关注其在发病机制和治疗方面的作用,为通过改变鼻腔微生物组来预防和治疗神经疾病提供新的视角。本综述总结了鼻腔微生物组对神经疾病的双向影响,包括对阿尔茨海默病、帕金森病、多发性硬化症和中风的致病性和潜在治疗作用。此外,现代医学技术与人工智能的结合,包括植入式传感器、建模软件和纳米流体技术,可能会进一步研究鼻腔微生物组与大脑之间的复杂相互作用,从而为治疗神经疾病提供新的选择。