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山梨醇脱氢酶缺乏对实验性糖尿病小鼠神经传导的影响。

Effects of sorbitol dehydrogenase deficiency on nerve conduction in experimental diabetic mice.

作者信息

Ng T F, Lee F K, Song Z T, Calcutt N A, Lee A Y, Chung S S, Chung S K

机构信息

Institute of Molecular Biology, The University of Hong Kong, China.

出版信息

Diabetes. 1998 Jun;47(6):961-6. doi: 10.2337/diabetes.47.6.961.

Abstract

In this report, we made use of sorbitol dehydrogenase (SDH)-deficient mutant mice (C57BL/LiA) to test whether there is a close correlation between the level of polyol accumulation and the degree of reduction in motor nerve conduction velocity (MNCV) associated with diabetes. The C57BL/LiA mouse has SDH deficiency due to a G-to-A mutation at the +1 position of intron 8, thus producing only aberrant SDH transcripts. These C57BL/LiA mice should have higher levels of polyol accumulation in the peripheral nerve because of the inability to further metabolize sorbitol to fructose. Here, we confirm by Western blot analysis and high-performance liquid chromatography that these mice lack SDH in the sciatic nerve and other various tissues, whereas normal mice possess SDH. These C57BL/LiA mice do not display any obvious phenotype that includes peripheral neuropathy in the normal laboratory environment and breed normally as described previously, although the tissues that normally contain SDH accumulate more sorbitol. This finding suggested that C57BL/LiA mouse strain is a valid model for studying the role in diabetic neuropathy of the polyol pathway, which consists of two enzymes-aldose reductase for converting glucose to sorbitol and SDH for converting sorbitol to fructose. Sorbitol levels in the sciatic nerve of diabetic C57BL/10N, nondiabetic, and diabetic C57BL/LiA mice were increased 4.3-, 16.6-, and 38.1-fold, respectively, above that of nondiabetic C57BL/10N. The fructose level in the sciatic nerve was increased 2.4-fold in diabetic C57BL/10N mice compared with that of nondiabetic and diabetic C57BL/LiA mice. Diabetic SDH-deficient mice showed an MNCV reduction similar in magnitude to that of diabetic C57BL/10N mice, despite greater nerve sorbitol accumulation and the lack of fructose in the former. The present data suggest that the levels of sorbitol and fructose in the sciatic nerve of mice do not correlate with the severity of MNCV deficit associated with diabetes.

摘要

在本报告中,我们利用山梨醇脱氢酶(SDH)缺陷型突变小鼠(C57BL/LiA)来测试多元醇积累水平与糖尿病相关的运动神经传导速度(MNCV)降低程度之间是否存在密切关联。C57BL/LiA小鼠由于内含子8第+1位的G到A突变而存在SDH缺陷,因此只产生异常的SDH转录本。由于无法将山梨醇进一步代谢为果糖,这些C57BL/LiA小鼠外周神经中的多元醇积累水平应该更高。在此,我们通过蛋白质免疫印迹分析和高效液相色谱法证实,这些小鼠的坐骨神经和其他各种组织中缺乏SDH,而正常小鼠则拥有SDH。这些C57BL/LiA小鼠在正常实验室环境中未表现出任何明显的表型,包括周围神经病变,并且如前所述繁殖正常,尽管正常情况下含有SDH的组织积累了更多的山梨醇。这一发现表明,C57BL/LiA小鼠品系是研究多元醇途径在糖尿病神经病变中作用的有效模型,该途径由两种酶组成——将葡萄糖转化为山梨醇的醛糖还原酶和将山梨醇转化为果糖的SDH。糖尿病C57BL/10N小鼠、非糖尿病小鼠和糖尿病C57BL/LiA小鼠坐骨神经中的山梨醇水平分别比非糖尿病C57BL/10N小鼠高出4.3倍、16.6倍和38.1倍。与非糖尿病和糖尿病C57BL/LiA小鼠相比,糖尿病C57BL/10N小鼠坐骨神经中的果糖水平增加了2.4倍。糖尿病SDH缺陷型小鼠的MNCV降低幅度与糖尿病C57BL/10N小鼠相似,尽管前者神经中的山梨醇积累更多且缺乏果糖。目前的数据表明,小鼠坐骨神经中山梨醇和果糖的水平与糖尿病相关的MNCV缺陷严重程度无关。

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