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Multiple Modes of Communication between Neurons and Oligodendrocyte Precursor Cells

机译:神经元与少突胶质前体细胞之间的多种通信方式

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摘要

The surprising discovery of bona fide synapses between neurons and oligodendrocytes precursor cells (OPCs) 15 years ago placed these progenitors as real partners of neurons in the CNS. The role of these synapses has not been established yet, but a main hypothesis is that neuron-OPC synaptic activity is a signaling pathway controlling OPC proliferation/differentiation, influencing the myelination process. However, new evidences describing non-synaptic mechanisms of communication between neurons and OPCs have revealed that neuron-OPC interactions are more complex than expected. The activation of extrasynaptic receptors by ambient neurotransmitter or local spillover and the ability of OPCs to sense neuronal activity through a potassium channel suggest that distinct modes of communication mediate different functions of OPCs in the CNS. This review discusses different mechanisms used by OPCs to interact with neurons and their potential roles during postnatal development and in brain disorders.
机译:15年前,神经元与少突胶质细胞前体细胞(OPC)之间的真正突触的惊人发现使这些祖细胞成为CNS中神经元的真正伴侣。这些突触的作用尚未确定,但主要假设是神经元-OPC突触活性是控制OPC增殖/分化并影响髓鞘形成过程的信号传导途径。但是,描述神经元和OPC之间非突触通讯机制的新证据表明,神经元-OPC相互作用比预期的更为复杂。周围神经递质或局部溢出对突触外受体的激活以及OPC通过钾通道感应神经元活动的能力表明,不同的沟通方式介导了CNS中OPC的不同功能。这篇综述讨论了OPC与神经元相互作用的不同机制及其在产后发育和脑部疾病中的潜在作用。

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