首页> 美国卫生研究院文献>The Journal of Neuroscience >Adult Mammalian Sensory and Motor Neurons: Roles of Endogenous Neurotrophins and Rescue by Exogenous Neurotrophins after Axotomy
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Adult Mammalian Sensory and Motor Neurons: Roles of Endogenous Neurotrophins and Rescue by Exogenous Neurotrophins after Axotomy

机译:成人哺乳动物的感觉和运动神经元:轴切术后内源性神经营养素和外源性神经营养素的抢救作用。

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摘要

We have tested the ability of neurotrophins to reverse axotomy-induced changes in adult motor and sensory neurons, using the physiological measure of conduction velocity. Five weeks after axotomy, sensory and motor conduction velocities were greatly reduced. NT-3 at 60 μg/d, pumped directly onto the cut nerve stump, largely prevented the change in sensory fibers. Lower doses were less effective, and NT-4/5 was without effect. In contrast, both NT-3 and NT-4/5 were effective at rescuing motoneurons, with similar dose dependencies. This amelioration of physiological deficits in adult mammalian neurons suggests possible therapeutic application of neurotrophins. We have also studied the physiological effects of neurotrophin deprivation on intact peripheral neurons. After 2 weeks of sequestration of trkB ligands (BDNF and NT-4/5), motor, but not sensory, neuron conduction was significantly slowed. Sequestration of NT-3 was found to affect both motor and sensory fiber velocities but more modestly and only with higher doses of sequestering agent. These data therefore suggest that peripherally produced neurotrophins are necessary for the maintenance of normal functional properties of peripheral neurons.
机译:我们已经使用传导速度的生理测量方法测试了神经营养蛋白逆转轴突切开术引起的成人运动和感觉神经元变化的能力。轴切术后五周,感觉和运动传导速度大大降低。 NT-3以60μg/ d的浓度直接泵送到切开的神经残端上,在很大程度上防止了感觉纤维的变化。较低剂量无效,而NT-4 / 5无效。相比之下,NT-3和NT-4 / 5均可有效地拯救运动神经元,且剂量依赖性相似。成年哺乳动物神经元中生理缺陷的这种改善表明神经营养蛋白的可能治疗应用。我们还研究了神经营养蛋白剥夺对完整外周神经元的生理影响。螯合trkB配体(BDNF和NT-4 / 5),运动(而非感觉)后2周,神经元传导明显减慢。发现NT-3的螯合影响运动和感觉纤维的速度,但影响较小,并且仅与较高剂量的螯合剂一起使用。因此,这些数据表明,外周产生的神经营养蛋白对于维持外周神经元的正常功能特性是必需的。

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