首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Extracellular-vesicle type of volume transmission and tunnelling-nanotube type of wiring transmission add a new dimension to brain neuro-glial networks
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Extracellular-vesicle type of volume transmission and tunnelling-nanotube type of wiring transmission add a new dimension to brain neuro-glial networks

机译:细胞外小泡类型的体积传输和隧道-纳米管类型的布线传输为脑神经胶质网络增加了新的维度

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摘要

Two major types of intercellular communication are found in the central nervous system (CNS), namely wiring transmission (WT; point-to-point communication via private channels, e.g. synaptic transmission) and volume transmission (VT; communication in the extracellular fluid and in the cerebrospinal fluid). Volume and synaptic transmission become integrated because their chemical signals activate different types of interacting receptors in heteroreceptor complexes located synaptically and extrasynaptically in the plasma membrane. In VT, we focus on the role of the extracellular-vesicle type of VT, and in WT, on the potential role of the tunnelling-nanotube (TNT) type of WT. The so-called exosomes appear to be the major vesicular carrier for intercellular communication but the larger microvesicles also participate. Extracellular vesicles are released from cultured cortical neurons and different types of glial cells and modulate the signalling of the neuronal–glial networks of the CNS. This type of VT has pathological relevance, and epigenetic mechanisms may participate in the modulation of extracellular-vesicle-mediated VT. Gerdes and co-workers proposed the existence of a novel type of WT based on TNTs, which are straight transcellular channels leading to the formation in vitro of syncytial cellular networks found also in neuronal and glial cultures.
机译:在中枢神经系统(CNS)中发现了两种主要的细胞间通讯类型,即布线传输(WT;通过专用通道的点对点通讯,例如突触传输)和体积传输(VT)在细胞外液中和脑脊液)。体积和突触传递被整合,因为它们的化学信号激活了质膜中突触和突触外的异受体复合物中不同类型的相互作用受体。在VT中,我们专注于VT的细胞外囊泡类型的作用,而在WT中,我们关注于WT的隧道-纳米管(TNT)类型的潜在作用。所谓的囊泡似乎是细胞间通讯的主要囊泡载体,但较大的微囊泡也参与其中。细胞外囊泡从培养的皮质神经元和不同类型的神经胶质细胞中释放出来,并调节中枢神经系统神经元-神经胶质网络的信号传导。这种类型的室速与病理相关,表观遗传机制可能参与细胞外囊介导的室速的调节。 Gerdes和同事提出了一种新型的基于TNT的WT,WT是直接的跨细胞通道,导致在神经元和神经胶质文化中也发现了合胞细胞网络的体外形成。

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