n5-STZ糖尿病模型对Wistar大鼠坐骨神经和背根神经节神经元的影响。

ISRN endocrinology Pub Date : 2013-01-01 Epub Date: 2013-02-17 DOI:10.1155/2013/638028
Francisco Walber Ferreira-da-Silva, Kerly Shamyra da Silva-Alves, Matheus Lemos-Dos-Santos, Keciany Alves de Oliveira, Humberto Cavalcante Joca, Otoni Cardoso do Vale, Andrelina Noronha Coelho-de-Souza, José Henrique Leal-Cardoso
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引用次数: 16

摘要

在新生大鼠出生后第5天,通过单次注射链脲佐菌素(STZ)获得一种与II型糖尿病相似的糖尿病实验模型n5-STZ。本研究旨在描述n5-STZ模型大鼠周围神经元兴奋性的变化。诱导n5-STZ DM,在大鼠生命第12周进行电生理评价。大鼠出现葡萄糖耐受不良、感觉改变、高血糖或接近正常血糖(21.2±1.6和7.4±0.4 mmol/L)。近正常血糖组坐骨神经复合动作电位(CAP)第2波(第2分量,传导速度48.8 m/s)振幅下降,电生理变化明显。高血糖大鼠坐骨神经第2 CAP组分兴奋性、振幅和传导速度降低;DRG神经元的静息电位去极化(4 ~ 5 mV),动作电位最大上升和下降倾斜度降低,但Na(+)电流(INa(+)未见改变。因此,n5-STZ大鼠的兴奋性改变与血糖水平有关,但不太可能归因于INa(+)的变化。我们的数据证实了n5-STZ模型是研究II型糖尿病的有用模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

n5-STZ Diabetic Model Develops Alterations in Sciatic Nerve and Dorsal Root Ganglia Neurons of Wistar Rats.

n5-STZ Diabetic Model Develops Alterations in Sciatic Nerve and Dorsal Root Ganglia Neurons of Wistar Rats.

n5-STZ Diabetic Model Develops Alterations in Sciatic Nerve and Dorsal Root Ganglia Neurons of Wistar Rats.

n5-STZ Diabetic Model Develops Alterations in Sciatic Nerve and Dorsal Root Ganglia Neurons of Wistar Rats.

One experimental model of diabetes mellitus (DM) similar to type II DM, called n5-STZ, is obtained by a single injection (via i.p.) of streptozotocin (STZ) in the 5th day of life of newborn rats. The present investigation aimed to characterize alterations in excitability of rat peripheral neurons in n5-STZ model. n5-STZ DM was induced, and electrophysiological evaluation was done at 12th week of rat life. Rats developed glucose intolerance, sensory alteration, and hyperglycemia or near-normoglycemia (21.2 ± 1.6 and 7.4 ± 0.4 mmol/L). In near-normoglycemia group the significant electrophysiological alteration observed was decreased in amplitude of 2nd wave (2nd component, conduction velocity: 48.8 m/s) of compound action potential (CAP) of sciatic nerve. For hyperglycemic rats, decreased excitability, amplitude, and conduction velocity of 2nd CAP component of sciatic nerve were found; a depolarization of resting potential (4-5 mV) and reduction in maximum ascendant and descendant inclinations of action potential were found in DRG neurons but no alteration on Na(+) current (INa(+) ). Thus, n5-STZ rats develop alterations in excitability which were related to glycemic levels but were not likely attributable to changes on INa(+) . Our data confirm that n5-STZ model is a useful model to study type II DM.

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