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脑脊液(CSF)中的细胞外线粒体:在中枢神经系统(CNS)生理学和发病机制中的潜在类型及关键作用。

Extracellular mitochondria in the cerebrospinal fluid (CSF): Potential types and key roles in central nervous system (CNS) physiology and pathogenesis.

作者信息

Caicedo Andrés, Zambrano Kevin, Sanon Serena, Gavilanes Antonio W D

机构信息

Universidad San Francisco de Quito USFQ, Colegio de Ciencias de la Salud, Escuela de Medicina, Quito, Ecuador; Universidad San Francisco de Quito USFQ, Instituto de Investigaciones en Biomedicina, Quito, Ecuador; Mito-Act Research Consortium, Quito, Ecuador; Sistemas Médicos SIME, Universidad San Francisco de Quito, Quito, Ecuador.

Universidad San Francisco de Quito USFQ, Colegio de Ciencias de la Salud, Escuela de Medicina, Quito, Ecuador; Universidad San Francisco de Quito USFQ, Instituto de Investigaciones en Biomedicina, Quito, Ecuador; Mito-Act Research Consortium, Quito, Ecuador; School for Mental Health and Neuroscience (MHeNs), Maastricht University, Maastricht, The Netherlands; Instituto de Neurociencias, Universidad San Francisco de Quito USFQ, Quito, Ecuador.

出版信息

Mitochondrion. 2021 May;58:255-269. doi: 10.1016/j.mito.2021.02.006. Epub 2021 Mar 2.

Abstract

The cerebrospinal fluid (CSF) has an important role in the transport of nutrients and signaling molecules to the central nervous and immune systems through its circulation along the brain and spinal cord tissues. The mitochondrial activity in the central nervous system (CNS) is essential in processes such as neuroplasticity, neural differentiation and production of neurotransmitters. Interestingly, extracellular and active mitochondria have been detected in the CSF where they act as a biomarker for the outcome of pathologies such as subarachnoid hemorrhage and delayed cerebral ischemia. Additionally, cell-free-circulating mitochondrial DNA (ccf-mtDNA) has been detected in both the CSF of healthy donors and in that of patients with neurodegenerative diseases. Key questions arise as there is still much debate regarding if ccf-mtDNA detected in CSF is associated with a diversity of active or inactive extracellular mitochondria coexisting in distinct pathologies. Additionally, it is of great scientific and medical importance to identify the role of extracellular mitochondria (active and inactive) in the CSF and the difference between them being damage associated molecular patterns (DAMPs) or factors that promote homeostasis. This review analyzes the different types of extracellular mitochondria, methods for their identification and their presence in CSF. Extracellular mitochondria in the CSF could have an important implication in health and disease, which may lead to the development of medical approaches that utilize mitochondria as therapeutic agents.

摘要

脑脊液(CSF)在营养物质和信号分子沿脑和脊髓组织循环运输至中枢神经系统和免疫系统的过程中发挥着重要作用。中枢神经系统(CNS)中的线粒体活性在神经可塑性、神经分化和神经递质产生等过程中至关重要。有趣的是,在脑脊液中已检测到细胞外活性线粒体,它们可作为蛛网膜下腔出血和迟发性脑缺血等病理结果的生物标志物。此外,在健康供体和神经退行性疾病患者的脑脊液中均检测到游离循环线粒体DNA(ccf-mtDNA)。由于关于脑脊液中检测到的ccf-mtDNA是否与不同病理状态下共存的多种活性或非活性细胞外线粒体相关仍存在诸多争议,因此出现了一些关键问题。此外,确定脑脊液中细胞外线粒体(活性和非活性)的作用以及它们作为损伤相关分子模式(DAMPs)或促进内环境稳定的因素之间的差异具有重大的科学和医学意义。本综述分析了不同类型的细胞外线粒体、其鉴定方法及其在脑脊液中的存在情况。脑脊液中的细胞外线粒体可能对健康和疾病具有重要影响,这可能会促使开发将线粒体用作治疗剂的医学方法。

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