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神经丝运输速率的实验性增加:神经丝数量和轴突直径的减少。

Experimental increase of neurofilament transport rate: decreases in neurofilament number and in axon diameter.

作者信息

Monaco S, Autilio-Gambetti L, Lasek R J, Katz M J, Gambetti P

机构信息

Institute of Pathology, Case Western Reserve University, Cleveland, OH 44106.

出版信息

J Neuropathol Exp Neurol. 1989 Jan;48(1):23-32. doi: 10.1097/00005072-198901000-00003.

Abstract

In 2,5-hexanedione (2,5-HD)-induced axonal neuropathy, the rate of neurofilament (NF) transport increases in optic axons. To test the prediction that increases in the rate of polymer transport in any one locality of the axon lead directly to a decrease in the number of NF in that locality, NF and microtubules (MT) were quantitatively analyzed in axonal cross sections. In 2,5-HD axons the number of NF was 38% of that in control axons while the number of MT was not significantly changed; it appears that the drug treatment decreases NF number in the proximal axon regions, most directly through an increase in rate of NF transport. In those regions, the cross-sectional areas of the 2,5-HD-treated axons were 45% smaller than those of control axons; although the axons had shrunk in diameter, they retained their normal cylindrical shapes as measured by the index of circularity. Reduced internal expansive forces in the axon, working in conjunction with the normal external compressive forces, appear to reduce the radius of the axon. Quantitative analyses demonstrated that the average and the maximum lateral spacings between NF-NF, NF-MT, and MT-MT were all 30% larger in 2,5-HD-treated axons than in control axons. This suggests that polymers are relatively free to move laterally away from one another and to fill the available space within the axon. These observations are not consistent with models wherein 2,5-HD acts to crosslink the NF into an immobile network that can no longer advance within the axon. Instead, it appears more likely that 2,5-HD acts selectively on the interaction between some NF and the slow transport mechanism to increase the rate of NF transport.

摘要

在2,5 -己二酮(2,5 - HD)诱导的轴索性神经病中,视神经轴突中的神经丝(NF)运输速率增加。为了验证轴突中任何一个局部聚合物运输速率的增加会直接导致该局部NF数量减少这一预测,对轴突横切面中的NF和微管(MT)进行了定量分析。在2,5 - HD处理的轴突中,NF数量是对照轴突的38%,而MT数量没有显著变化;似乎药物处理最直接地通过增加NF运输速率来减少近端轴突区域的NF数量。在这些区域,2,5 - HD处理的轴突横截面积比对照轴突小45%;尽管轴突直径缩小,但通过圆度指数测量,它们仍保持正常的圆柱形形状。轴突内部扩张力的降低,与正常的外部压缩力共同作用,似乎减小了轴突的半径。定量分析表明,在2,5 - HD处理的轴突中,NF - NF、NF - MT和MT - MT之间的平均和最大侧向间距都比对照轴突大30%。这表明聚合物相对自由地彼此横向移动并填充轴突内的可用空间。这些观察结果与2,5 - HD使NF交联成不再能在轴突内前进的固定网络的模型不一致。相反,2,5 - HD似乎更有可能选择性地作用于一些NF与慢速运输机制之间的相互作用,以增加NF运输速率。

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