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首页> 外文期刊>Biophysical Journal >Ultramicroscopy reveals axonal transport impairments in cortical motor neurons at prion disease.
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Ultramicroscopy reveals axonal transport impairments in cortical motor neurons at prion disease.

机译:超显微术显示pr病毒病时皮质运动神经元的轴突运输受损。

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摘要

The functional imaging of neuronal circuits of the central nervous system is crucial for phenotype screenings or investigations of defects in neurodegenerative disorders. Current techniques yield either low penetration depth, yield poor resolution, or are restricted by the age of the animals. Here, we present a novel ultramicroscopy protocol for fluorescence imaging and three-dimensional reconstruction in the central nervous system of adult mice. In combination with tracing as a functional assay for axonal transport, retrogradely labeled descending motor neurons were visualized with >4 mm penetration depth. The analysis of the motor cortex shortly before the onset of clinical prion disease revealed that >80% neurons have functional impairments in axonal transport. Our study provides evidence that prion disease is associated with severe axonal transport defects in the cortical motor neurons and suggests a novel mechanism for prion-mediated neurodegeneration.
机译:中枢神经系统神经元回路的功能成像对于表型筛查或神经退行性疾病缺陷研究至关重要。当前的技术产生低穿透深度,产生较差的分辨率或受动物年龄限制。在这里,我们提出了一种成年小鼠中枢神经系统中的荧光成像和三维重建的新型超显微协议。结合追踪作为轴突转运的功能测定,可以观察到逆行标记的下降运动神经元的穿透深度> 4 mm。在临床病毒病发作之前不久进行的运动皮层分析显示,> 80%的神经元在轴突运输中存在功能障碍。我们的研究提供证据,证明ion病毒病与皮质运动神经元中严重的轴突运输缺陷有关,并提出了病毒介导的神经变性的新机制。

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