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慢沃勒氏变性基因(Wld(s))对长春新碱神经病变也具有保护作用。

The gene for slow Wallerian degeneration (Wld(s)) is also protective against vincristine neuropathy.

作者信息

Wang M, Wu Y, Culver D G, Glass J D

机构信息

Department of Neurology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

Neurobiol Dis. 2001 Feb;8(1):155-61. doi: 10.1006/nbdi.2000.0334.

Abstract

Neurological diseases are frequently associated with axonal degeneration, which leads to dysfunction though separation of neurons from their targets. The mechanisms of axonal degeneration are largely unknown and in many cases are independent of those occurring within cell bodies in neurodegenerative disorders. The Wld(s) mouse mutant demonstrates the unique phenotype of resistance to axonal degeneration after axotomy (slow Wallerian degeneration), making it a powerful tool for studying mechanisms of axonal degeneration. We asked whether the Wld(s) mutation also provides resistance to axonal degeneration in a slowly progressing neuropathy. Using cultured dorsal root ganglion neurons we compared the course of axonal degeneration in response to exposure to the neurotoxin vincristine and found that Wld(s) neurites were relatively resistant to vincristine neuropathy. These findings suggest common pathophysiologic mechanisms between axotomy-induced Wallerian degeneration and toxic neuropathy. The implications are wide-ranging and are relevant to the pathophysiology of axonal degeneration seen in a wide spectrum of neurological diseases ranging from stroke and head trauma to spinal cord injury and peripheral neuropathy.

摘要

神经疾病常与轴突退变相关,轴突退变会通过使神经元与其靶标分离而导致功能障碍。轴突退变的机制在很大程度上尚不清楚,而且在许多情况下与神经退行性疾病中细胞体内发生的机制无关。Wld(s) 小鼠突变体表现出轴突切断后对轴突退变具有抗性的独特表型(缓慢的沃勒变性),使其成为研究轴突退变机制的有力工具。我们研究了Wld(s) 突变在缓慢进展性神经病变中是否也能抵抗轴突退变。我们使用培养的背根神经节神经元,比较了暴露于神经毒素长春新碱后轴突退变的过程,发现Wld(s) 神经突对长春新碱神经病变相对具有抗性。这些发现提示了轴突切断诱导的沃勒变性和中毒性神经病变之间存在共同的病理生理机制。其影响广泛,与从中风、头部创伤到脊髓损伤和周围神经病变等广泛神经疾病中所见的轴突退变病理生理学相关。

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