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Motor neurons control blood vessel patterning in the developing spinal cord

机译:运动神经元控制脊髓发育中的血管模式

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摘要

Formation of a precise vascular network within the central nervous system is of critical importance to assure delivery of oxygen and nutrients and for accurate functionality of neuronal networks. Vascularization of the spinal cord is a highly stereotypical process. However, the guidance cues controlling blood vessel patterning in this organ remain largely unknown. Here we describe a new neuro-vascular communication mechanism that controls vessel guidance in the developing spinal cord. We show that motor neuron columns remain avascular during a developmental time window, despite expressing high levels of the pro-angiogenic vascular endothelial growth factor (VEGF). We describe that motor neurons express the VEGF trapping receptor sFlt1 via a Neuropilin-1-dependent mechanism. Using a VEGF gain-of-function approach in mice and a motor neuron-specific sFlt1 loss-of-function approach in chicken, we show that motor neurons control blood vessel patterning by an autocrine mechanism that titrates motor neuron-derived VEGF via their own expression of sFlt1.
机译:在中枢神经系统内形成精确的血管网络对于确保氧气和营养物质的输送以及神经网络的准确功能至关重要。脊髓的血管化是高度定型的过程。然而,在该器官中控制血管图案的指导线索仍然是未知的。在这里,我们描述了一种新的神经-血管通讯机制,该机制可控制正在发育的脊髓中的血管引导。我们显示,尽管表达高水平的促血管生成血管内皮生长因子(VEGF),运动神经元列在发育时间窗口内保持无血管。我们描述运动神经元通过依赖Neuropilin-1的机制表达VEGF捕获受体sFlt1。使用小鼠中的VEGF功能获得方法和鸡中的运动神经元特异性sFlt1功能丧失方法,我们显示运动神经元通过自分泌机制控制血管形成,所述自分泌机制通过自身来滴定运动神经元衍生的VEGF sFlt1的表达。

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