首页> 外文期刊>Experimental Neurology >Dose and duration of nerve growth factor (NGF) administration determine the extent of behavioral recovery following peripheral nerve injury in the rat.
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Dose and duration of nerve growth factor (NGF) administration determine the extent of behavioral recovery following peripheral nerve injury in the rat.

机译:神经生长因子(NGF)的给药剂量和持续时间决定了大鼠周围神经损伤后行为恢复的程度。

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摘要

Nerve growth factor (NGF) has been previously shown to support neuron survival and direct neurite outgrowth in vitro, and to enhance axonal regeneration in vivo. However, a systematic analysis of NGF dose and dose duration on behavioral recovery following peripheral nerve injury in rodents has not been previously investigated. Here, we show that NGF promotes a bell shaped dose-response, with an optimal threshold effect occurring at 800 pg/mul. High dose NGF inhibited regeneration. However, this effect could be reversed through functional blockade of p75 receptors, thus implicating these receptors as mediators of the inhibitory response. Longer term evaluation showed that animals administered NGF at 80 ng/day for 3 weeks had greater sensorimotor recovery compared to all other treatment groups. These animals made significantly fewer errors during skilled locomotion, and displayed both increased vertical and fore-aft ground reaction forces during flat surface locomotion. Furthermore, terminal electrophysiological and myological assessments (EMG, wet gastrocnemius muscle weights) corroborated the behavioral data. Overall, these data support the hypothesis that both appropriate dose and duration of NGF are important determinants of behavioral recovery following nerve injury in the rat.
机译:先前已显示神经生长因子(NGF)在体外支持神经元存活和直接神经突向外生长,并在体内增强轴突再生。然而,以前没有研究过NGF剂量和剂量持续时间对啮齿动物周围神经损伤后行为恢复的系统分析。在这里,我们表明NGF促进了钟形剂量反应,最佳阈值效应发生在800 pg / mul。高剂量的NGF抑制再生。但是,可以通过对p75受体的功能性阻断来逆转这种作用,从而暗示这些受体是抑制反应的介质。长期评估显示,与所有其他治疗组相比,以80 ng /天,连续3周施用NGF的动物具有更高的感觉运动恢复。这些动物在熟练的运动过程中产生的错误明显减少,并且在平坦的表面运动过程中显示出增加的垂直和前后地面反作用力。此外,终末电生理和肌肉学评估(EMG,腓肠肌湿重)证实了行为数据。总的来说,这些数据支持以下假设:适当剂量的NGF和持续时间都是大鼠神经损伤后行为恢复的重要决定因素。

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