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Drosophila Models of Neuronal Injury

机译:果蝇神经元损伤模型。

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摘要

Neurite degeneration is a hallmark feature of nearly all neurodegenerative diseases, occurs after most brain trauma, and is thought to be the underlying cause of functional loss in patients. Understanding the genetic basis of neurite degeneration represents a major challenge in the neuroscience field. If it is possible to define key signaling pathways that promote neurite destruction, their blockade represents an exciting new potential therapeutic approach to suppressing neurological loss in patients. This review highlights recently developed models that can be used to study fundamental aspects of neuronal injury using the fruit fly Drosophila. The speed, precision, and powerful molecular-genetic tools available in the fruit fly make for an attractive system in which to dissect neuronal signaling after injury. Their use has led to the identification of some of the first molecules whose endogenous function includes promoting axonal degeneration after axotomy, and these signaling pathways appear functionally well conserved in mammals.
机译:神经突变性是几乎所有神经退行性疾病的标志性特征,发生在大多数脑外伤后,并且被认为是患者功能丧失的根本原因。了解神经突变性的遗传基础代表了神经科学领域的一项重大挑战。如果有可能定义促进神经突破坏的关键信号通路,那么它们的阻滞代表了一种抑制患者神经功能丧失的令人兴奋的新潜在治疗方法。这篇综述重点介绍了最近开发的模型,这些模型可用于研究果蝇果蝇对神经元损伤的基本方面。果蝇中可用的速度,精度和强大的分子遗传学工具构成了一个诱人的系统,可在该系统中解剖损伤后的神经元信号。它们的使用已导致鉴定出某些第一分子,这些分子的内源性功能包括促进轴突切开后的轴突变性,并且这些信号传导途径在哺乳动物中似乎在功能上非常保守。

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