...
首页> 外文期刊>Comparative Medicine >Insulin-Induced Hypoglycemic Peripheral Motor Neuropathy in Spontaneously Diabetic WBN/Kob Rats
【24h】

Insulin-Induced Hypoglycemic Peripheral Motor Neuropathy in Spontaneously Diabetic WBN/Kob Rats

机译:胰岛素诱导的降血糖外周电动机在自发性糖尿病WBN / Kob大鼠中

获取原文
获取原文并翻译 | 示例
           

摘要

Intensive insulin therapy can lead to hypoglycemia, with patients sometimes developing hypoglycemia neuropathy. Spontaneously diabetic Wistar Bonn Kobori (WBN/Kob) rats develop diabetic peripheral motor neuropathy characterized by segmental demyelination and axonal degeneration. We examined the short-term effects of hypoglycemia on neuropathic changes in these rats. Spontaneous diabetic WBN/Kob rats received insulin implants for 40 d and were divided into 3 groups based on blood glucose levels: group N, normoglycemic to slightly hyperglycemic (150 to 250 mg/dL); group H, hypoglycemic to slightly hyperglycemic (50 to 200 mg/dL); and group D, nontreated spontaneously diabetic (350 to 420 mg/dL). Conduction velocity was measured in sciatic tibial motor nerves; these nerves also underwent qualitative and quantitative histomorphologic analysis. Conduction velocity was not significantly different in N, D, and H groups. Morphologic analysis of the sciatic nerves of H rats showed severe changes, including axonal degeneration, myelin distention, and endoneurial fibrosis, that tended to occur in large, myelinated fibers. N and D rats showed relatively mild changes. The degree and distribution of degenerated nerve fibers in H rats were significantly higher than in N and D rats. These results suggest that hypoglycemia of less than 50 mg/dL induced severe peripheral neuropathy. Hypoglycemic lesions differed from the hyperglycemic lesions in diabetic WBN/Kob rats. This rat strain is an appropriate model for investigating the hypoglycemic peripheral neuropathy that can be associated with a diabetic condition.
机译:密集型胰岛素治疗可导致低血糖,患者有时会发育低血糖神经病变。自发性糖尿病Wistar Bonn Kobori(WBN / Kob)大鼠开发糖尿病外周电动机神经病变,其特征在于节段性脱髓鞘和轴突变性。我们检查了低血糖对这些大鼠神经病变变化的短期影响。自发性糖尿病WBN / KOB大鼠接受了40 d的胰岛素植入物,并基于血糖水平分为3组:N,Normoglycex至略微高血糖(150-250mg / dl); H组,低血糖略微血糖(50至200 mg / dl);和D组,自发性糖尿病(350至420mg / dl)。在坐骨胫骨电机神经中测量传导速度;这些神经也经过了定性和定量的组织形态学分析。 N,D和H组导通速度没有显着差异。 H大鼠坐骨神经的形态学分析表现出严重的变化,包括轴突变性,髓鞘偏差和内底纤维化,往往发生在大型髓纤维中。 N和D大鼠显示出相对温和的变化。将退化神经纤维的H大鼠的程度和分布显着高于N和D大鼠。这些结果表明,低于50mg / d1诱导严重外周神经病变的低血糖。降血糖病变与糖尿病WBN / Kob大鼠的高血糖病变不同。该大鼠菌株是用于研究可以与糖尿病病症相关的低血糖外周神经病变的适当模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号