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突触外传递与细胞外空间的扩散参数

Extrasynaptic transmission and the diffusion parameters of the extracellular space.

作者信息

Syková Eva, Vargová Lýdia

机构信息

Department of Neuroscience, Charles University, 2nd Medical Faculty, Prague, Czech Republic.

出版信息

Neurochem Int. 2008 Jan;52(1-2):5-13. doi: 10.1016/j.neuint.2007.04.007. Epub 2007 Apr 19.

Abstract

Extrasynaptic volume transmission, mediated by the diffusion of neuroactive substances in the extracellular space (ECS), plays an important role in short- and long-distance communication between nerve cells. The ability of a substance to reach extrasynaptic high-affinity receptors via diffusion depends on the ECS diffusion parameters, ECS volume fraction alpha (alpha=ECS volume/total tissue volume) and tortuosity lambda (lambda2=free/apparent diffusion coefficient), which reflects the presence of diffusion barriers represented by, e.g., fine astrocytic processes or extracellular matrix molecules. These barriers channel the migration of molecules in the ECS, so that diffusion may be facilitated in a certain direction, i.e. anisotropic. The diffusion parameters alpha and lambda differ in various brain regions, and diffusion in the CNS is therefore inhomogeneous. Changes in diffusion parameters have been found in many physiological and pathological states, such as development and aging, neuronal activity, lactation, ischemia, brain injury, degenerative diseases, tumor growth and others, in which cell swelling, glial remodeling and extracellular matrix changes are key factors influencing diffusion. Changes in ECS volume, tortuosity and anisotropy significantly affect the accumulation and diffusion of neuroactive substances and thus extrasynaptic transmission, neuron-glia communication, mediator "spillover" and synaptic crosstalk as well as, cell migration. The various changes occurring during pathological states can be important for diagnosis, drug delivery and treatment.

摘要

由神经活性物质在细胞外间隙(ECS)中的扩散介导的突触外容积传递,在神经细胞之间的短距离和长距离通讯中发挥着重要作用。一种物质通过扩散到达突触外高亲和力受体的能力,取决于ECS扩散参数、ECS容积分数α(α=ECS容积/组织总体积)和曲折度λ(λ²=自由扩散系数/表观扩散系数),曲折度反映了由例如精细的星形胶质细胞突起或细胞外基质分子所代表的扩散屏障的存在。这些屏障引导分子在ECS中的迁移,使得扩散可能在某个特定方向上更容易进行,即具有各向异性。扩散参数α和λ在不同脑区有所不同,因此中枢神经系统中的扩散是不均匀的。在许多生理和病理状态下都发现了扩散参数的变化,如发育和衰老、神经元活动、泌乳、缺血、脑损伤、退行性疾病、肿瘤生长等,其中细胞肿胀、胶质细胞重塑和细胞外基质变化是影响扩散的关键因素。ECS容积、曲折度和各向异性的变化显著影响神经活性物质的积累和扩散,进而影响突触外传递、神经元-胶质细胞通讯、递质“溢出”和突触串扰以及细胞迁移。病理状态下发生的各种变化对于诊断、药物递送和治疗可能具有重要意义。

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