首页> 外文期刊>Journal of Neuroscience Research >BDNF-induced survival of auditory neurons in vivo: Cessation of treatment leads to accelerated loss of survival effects.
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BDNF-induced survival of auditory neurons in vivo: Cessation of treatment leads to accelerated loss of survival effects.

机译:BDNF诱导的听觉神经元在体内的存活:停止治疗会导致存活效应加速丧失。

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摘要

Neurotrophic factors are important for the development and maintenance of the auditory system. They have also been shown to act as survival factors for auditory neurons in animal deafness models. Studies have demonstrated recently that these neurotrophic factors not only maintain survival of auditory neurons, but that these surviving neurons retain functionality. It remains to be determined, however, if a single administration of a neurotrophic factor is sufficient to maintain auditory neuron survival after loss of hair cells, or if sustained delivery is required. This study investigated the longevity of the survival effects of BDNF on auditory neurons in deafened guinea pigs. Briefly, the left cochleae of deafened guinea pigs were infused with BDNF for 28 days via a mini-osmotic pump, and neuronal survival was analyzed at various stages after the completion of treatment. BDNF treatment prevented the degeneration of auditory neurons that normally is seen after a loss of hair cells, supporting previous studies. Our results indicate, however, that cessation of BDNF treatment leads to an accelerated decline in auditory neuron survival as compared to that observed in deafened, untreated cochleae. These findings indicate that much work remains to be done to establish a technique for the long-term survival of auditory neurons in the deaf ear. Copyright 2003 Wiley-Liss, Inc.
机译:神经营养因子对于听觉系统的发育和维持很重要。在动物耳聋模型中,它们还被证明可以作为听觉神经元的生存因子。最近的研究表明,这些神经营养因子不仅维持听觉神经元的存活,而且这些存活的神经元保留功能。然而,是否有神经营养因子的单次给药是否足以在毛细胞丢失后维持听觉神经元存活,还是是否需要持续分娩尚待确定。这项研究调查了BDNF对耳聋豚鼠听觉神经元的存活作用的寿命。简而言之,通过微型渗透泵向聋哑豚鼠的左耳蜗注入BDNF 28天,并在治疗完成后的各个阶段分析神经元存活情况。 BDNF治疗可防止听觉神经元的变性,这种现象通常在毛细胞丢失后可见,支持先前的研究。然而,我们的结果表明,与耳聋,未治疗的耳蜗相比,停止BDNF治疗会导致听觉神经元存活加速下降。这些发现表明,建立耳聋听神经元的长期存活技术尚需做大量工作。版权所有2003 Wiley-Liss,Inc.

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