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实验性糖尿病性神经病变:不同动物模型中慢轴突运输和轴突大小的相似变化

Experimental diabetic neuropathy: similar changes of slow axonal transport and axonal size in different animal models.

作者信息

Medori R, Jenich H, Autilio-Gambetti L, Gambetti P

机构信息

Division of Neuropathology, Case Western Reserve University, Cleveland, Ohio 44106.

出版信息

J Neurosci. 1988 May;8(5):1814-21. doi: 10.1523/JNEUROSCI.08-05-01814.1988.

DOI:10.1523/JNEUROSCI.08-05-01814.1988
PMID:3367221
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6569209/
Abstract

Analysis of slow axonal transport in sciatic and primary visual systems of BB rats with spontaneous diabetes of 2.5-3.5 months duration revealed a delay in transport of the neurofilament (NF) subunits, tubulin, actin, and the 60, 52, and 30 kDa polypeptides in both systems. The polypeptides examined were not affected uniformly. Rather, the transport of the 60, 52, and 30 kDa polypeptides and the rapidly moving component of tubulin, all constituents of the slow component b (SCb) of axonal transport, appeared to be more severely delayed than the transport of polypeptide constituents of the slow component a (SCa), such as NF and the slow-moving tubulin. Transport was not impaired in diabetic BB rats maintained normoglycemic with optimal doses of insulin. A 52 kDa polypeptide constituent of SCb was identified as neuron-specific enolase, and the 30 and 60 kDa polypeptides are likely to be aldolase and pyruvate kinase; all 3 are glycolytic enzymes. Morphometric analysis revealed that the cross-sectional area of sciatic axons was increased proximally at the level of the motor roots and decreased distally at the level of the tibial nerve. The changes in slow transport and caliber observed in central and peripheral axonal systems of diabetic BB rats are virtually identical to those previously described in rats with streptozotocin-induced diabetes, another model of insulin-dependent diabetes. In both models, the alterations of axonal caliber are likely to be secondary to the impairment of axonal transport.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对病程为2.5 - 3.5个月的自发性糖尿病BB大鼠的坐骨神经和初级视觉系统中的轴突慢速运输进行分析发现,两个系统中神经丝(NF)亚基、微管蛋白、肌动蛋白以及60 kDa、52 kDa和30 kDa多肽的运输均出现延迟。所检测的多肽受到的影响并不一致。相反,轴突运输慢成分b(SCb)的所有成分,即60 kDa、52 kDa和30 kDa多肽以及微管蛋白的快速移动部分,其运输似乎比慢成分a(SCa)的多肽成分(如NF和慢速移动的微管蛋白)的运输受到更严重的延迟。用最佳剂量胰岛素维持血糖正常的糖尿病BB大鼠的运输未受损。SCb的一种52 kDa多肽成分被鉴定为神经元特异性烯醇化酶,30 kDa和60 kDa多肽可能是醛缩酶和丙酮酸激酶;这三种都是糖酵解酶。形态计量学分析显示,坐骨神经轴突的横截面积在运动神经根水平近端增加,在胫神经水平远端减小。在糖尿病BB大鼠的中枢和外周轴突系统中观察到的慢速运输和管径变化与先前在链脲佐菌素诱导的糖尿病大鼠(另一种胰岛素依赖型糖尿病模型)中描述的变化几乎相同。在这两种模型中,轴突管径的改变可能继发于轴突运输的损伤。(摘要截短于250字)

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