Viancour T A, Kreiter N A
Department of Biological Sciences, University of Maryland, Baltimore 21228-5398.
Brain Res. 1993 Nov 19;628(1-2):209-17. doi: 10.1016/0006-8993(93)90957-o.
An isolated sciatic nerve preparation was used to measure the transport rates of more than 18,000 vesicles in 72 axons from young (3-4 months of age) and old (24-26 months of age) rats from two strains (Harlan Sprague-Dawley and Fisher-344). Average anterograde and retrograde vesicle transport rates were significantly slower in the older animals. The amount of slowing of anterograde vesicles was twice as great as the slowing of retrograde vesicles. Age-related slowing of vesicle transport was inversely proportional to vesicle speed, with the result that transport of the slowest and largest vesicles may essentially be blocked in older axons. One possible explanation for these data is that long-lived axonal cytoskeletal proteins are subject to age-related changes that impede vesicle transport.
使用分离的坐骨神经制剂来测量来自两个品系(哈兰·斯普拉格-道利和费希尔-344)的年轻(3 - 4个月大)和年老(24 - 26个月大)大鼠的72条轴突中18000多个囊泡的运输速率。年老动物中平均顺行和逆行囊泡运输速率明显较慢。顺行囊泡的减慢量是逆行囊泡减慢量的两倍。与年龄相关的囊泡运输减慢与囊泡速度成反比,结果是最慢和最大的囊泡在年老轴突中的运输可能基本被阻断。这些数据的一个可能解释是,长寿的轴突细胞骨架蛋白会发生与年龄相关的变化,从而阻碍囊泡运输。