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Evaluating the effectiveness of anti-Nogo treatment in spinal cord injuries

机译:评估脊髓损伤抗Nogo治疗的有效性

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As humans, we cannot regenerate axons within the central nervous system (CNS), therefore, making any damage to it permanent. This leads to the loss of sensory and motor function below the site of injury and can be crippling to a person’s health. Spontaneous recovery can occur from plastic changes, but it is minimal. The absence of regeneration is due to the inhibitory environment of the CNS as well as the inherent inability of CNS axons to form growth cones. Amongst many factors, one of the major inhibitory signals of the CNS environment is the myelin-associated Nogo pathway. Nogo-A, Nogo-B and Nogo-C (Nogo), stimulate the Nogo receptor, inhibiting neurite outgrowth by causing growth cones to collapse through activation of Rho Kinase (ROCK). Antibodies can be used to target this signalling pathway by binding to Nogo and thus promote the outgrowth of neuronal axons in the CNS. This use of anti-Nogo antibodies has been shown to upregulate CNS regeneration as well as drastically improve sensory and motor function in both rats and primates when coupled with adequate training. Here, we evaluate whether the experimental success of anti-Nogo at improving CNS regeneration can be carried over into the clinical setting to treat spinal cord injuries (SCI) and their symptoms successfully. Furthermore, we also discuss potential methods to improve the current treatment and any developmental obstacles.
机译:作为人类,我们不能再生在中枢神经系统(CNS)内的轴突,因此损坏永久性。这导致损伤部位下方的感官和电机功能的丧失,并且可以对一个人的健康瘫痪。自发恢复可能从塑料变化发生,但它很小。没有再生是由于CNS的抑制性环境以及CNS轴突的固有无法形成生长锥体。在许多因素中,CNS环境的主要抑制信号之一是髓鞘相关的Nogo途径。 Nogo-A,Nogo-B和Nogo-C(Nogo),刺激Nogo受体,通过使生长锥体通过激活Rho激酶(岩石)来抑制神经突的产物。抗体可用于通过与Nogo结合并因此促进CNS中神经元轴突的生长来靶向该信号传导途径。已经显示出这种抗Nogo抗体的使用来上调CNS再生,并且在与充分的训练相结合时,大鼠和灵长类动物在大鼠和灵长脂肿大的情况下大大提高了感官和运动功能。在这里,我们评估抗Nogo在改善CNS再生时的实验成功是否可以进入临床环境,以治疗脊髓损伤(SCI)和成功的症状。此外,我们还讨论了改善目前治疗和任何发育障碍的潜在方法。

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