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首页> 外文期刊>Cerebral cortex >Treatment With the Neutralizing Antibody Against Repulsive Guidance Molecule-a Promotes Recovery From Impaired Manual Dexterity in a Primate Model of Spinal Cord Injury
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Treatment With the Neutralizing Antibody Against Repulsive Guidance Molecule-a Promotes Recovery From Impaired Manual Dexterity in a Primate Model of Spinal Cord Injury

机译:用中和抗体对排斥引导分子的处理 - A促进脊髓损伤的灵长类动物的手动灵活性的恢复

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摘要

Axons in the mature mammalian central nervous system have only a limited capacity to grow/regenerate after injury, and spontaneous recovery of motor functions is therefore not greatly expected in spinal cord injury (SCI). To promote functional recovery after SCI, it is critical that corticospinal tract (CST) fibers reconnect properly with target spinal neurons through enhanced axonal growth/regeneration. Here, we applied antibody treatment against repulsive guidance molecule-a (RGMa) to a monkey model of SCI. We found that inhibition of upregulated RGMa around the lesioned site in the cervical cord resulted in recovery from impaired manual dexterity by accentuated penetration of CST fibers into laminae VII and IX, where spinal interneurons and motoneurons are located, respectively. Furthermore, pharmacological inactivation following intracortical microstimulation revealed that the contralesional, but not the ipsilesional, primary motor cortex was crucially involved in functional recovery at a late stage in our SCI model. The present data indicate that treatment with the neutralizing antibody against RGMa after SCI is a potential target for achieving restored manual dexterity in primates.
机译:成熟哺乳动物中枢神经系统中的轴突仅在损伤后生长/再生的有限能力,因此在脊髓损伤(SCI)中,运动功能的自发恢复不会大大预期。为了促进SCI后的功能恢复,通过增强的轴突生长/再生,皮质脊髓(CST)纤维与靶脊髓神经元正确重新连接至关重要。在此,我们将抗体治疗施用抗体治疗对SCI的猴子模型的排斥引导分子-A(RGMA)。我们发现,通过将CST纤维的渗透到Laminae VII和IX,脊髓间核和动机源分别位于Liminae VII和IX中,抑制宫颈帘线围绕宫颈帘线的损伤部位周围的损伤的RGMA抑制。此外,口腔内微刺激后的药理失活显示,对不起但不是Ipsilesional,主要的电动机皮质在我们的SCI模型中的晚期的功能恢复中至关重要。本数据表明,在SCI之后用中和抗体对RGMA进行治疗是在灵长类动物中实现恢复的手动灵活性的潜在靶标。

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