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首页> 外文期刊>Molecular and cellular neurosciences >Target-derived cardiotrophin-1 and insulin-like growth factor-I promote neurite growth and survival of developing oculomotor neurons.
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Target-derived cardiotrophin-1 and insulin-like growth factor-I promote neurite growth and survival of developing oculomotor neurons.

机译:靶源性心肌营养因子-1和胰岛素样生长因子-I促进神经突生长和发育动眼神经元的存活。

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摘要

Several trophic factors support the survival of developing motoneurons, but it is not known whether these factors act in a retrograde fashion from the motoneuron target muscle or are derived from other sources. Cardiotrophin-1 (CT-1) and the insulin-like growth factors (IGFs) are candidate target-derived motoneuron survival factors as both are expressed in muscle during naturally occurring motoneuron death and, applied systemically, support the survival of developing motoneurons. By using the embryonic chick oculomotor system, we show that CT-1 and IGF-I promote neurite outgrowth from E13-derived oculomotor explants and are retrogradely transported from muscle to nerve cell body in vivo, and injection of CT-1 or IGF-I into eye muscles increases motoneuron survival by 20 and 30%, respectively, as evidenced by calibrated stereological counting techniques. Pharmacological depletion of endogenous target-derived IGF-I in vivo reduces oculomotor neuron survival by up to 30% in a dose-dependent manner. These results significantly extend previous studies using systemic administration of trophic factors and are the first to demonstrate a target-derived retrograde mechanism of developing motoneuron survival factors. Copyright 2002 Elsevier Science.
机译:几种营养因子支持发育中的运动神经元的存活,但尚不知道这些因素是否从运动神经元靶肌以逆行方式起作用或源自其他来源。心肌营养素1(CT-1)和胰岛素样生长因子(IGFs)是候选的靶标运动神经元生存因子,因为两者均在自然发生的运动神经元死亡期间在肌肉中表达,并系统地支持发育中的运动神经元的生存。通过使用胚胎小鸡动眼系统,我们显示CT-1和IGF-I促进神经突从E13衍生的动眼外植体向外生长,并在体内从肌肉逆行转运至神经细胞体,并注射CT-1或IGF-I校准的立体计数技术证明,进入眼部肌肉可使运动神经元的存活率分别提高20%和30%。体内内源性靶标衍生的IGF-1的药理耗竭以剂量依赖性方式将动眼神经元存活率降低多达30%。这些结果大大扩展了以前使用营养因子系统性给药的研究,并且是第一个证明发展运动神经元生存因子的靶标逆行机制的研究。版权所有2002 Elsevier Science。

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