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醛糖还原酶抑制可改善糖尿病患者的神经传导速度。

Aldose reductase inhibition improves nerve conduction velocity in diabetic patients.

作者信息

Judzewitsch R G, Jaspan J B, Polonsky K S, Weinberg C R, Halter J B, Halar E, Pfeifer M A, Vukadinovic C, Bernstein L, Schneider M, Liang K Y, Gabbay K H, Rubenstein A H, Porte D

出版信息

N Engl J Med. 1983 Jan 20;308(3):119-25. doi: 10.1056/NEJM198301203080302.

Abstract

To assess the potential role of polyol-pathway activity in diabetic neuropathy, we measured the effects of sorbinil--a potent inhibitor of the key polyol-pathway enzyme aldose reductase--on nerve conduction velocity in 39 stable diabetics in a randomized, double-blind, cross-over trial. During nine weeks of treatment with sorbinil (250 mg per day), nerve conduction velocity was greater than during a nine-week placebo period for all three nerves tested: the peroneal motor nerve (mean increase [+/- S.E.M.], 0.70 +/- 0.24 m per second, P less than 0.008), the median motor nerve (mean increase, 0.66 +/- 0.27, P less than 0.005), and the median sensory nerve (mean increase, 1.16 +/- 0.50, P less than 0.035). Conduction velocity for all three nerves declined significantly within three weeks after cessation of the drug. These effects of sorbinil were not related to glycemic control, which was constant during the study. Although the effect of sorbinil in improving nerve conduction velocity in diabetics was small, the findings suggest that polyol-pathway activity contributes to slowed nerve conduction in diabetics. The clinical applicability of these observations remains to be determined, but they encourage further exploration of this approach to the treatment or prevention of diabetic neuropathy.

摘要

为评估多元醇途径活性在糖尿病性神经病变中的潜在作用,我们在一项随机、双盲、交叉试验中,测量了索比尼尔(一种关键多元醇途径酶醛糖还原酶的强效抑制剂)对39例病情稳定的糖尿病患者神经传导速度的影响。在接受索比尼尔治疗(每日250毫克)的9周期间,所检测的三条神经的神经传导速度均高于为期9周的安慰剂治疗期:腓总运动神经(平均增加[±标准误],0.70±0.24米/秒,P<0.008)、正中运动神经(平均增加,0.66±0.27,P<0.005)和正中感觉神经(平均增加,1.16±0.50,P<0.035)。停药后3周内,所有三条神经的传导速度均显著下降。索比尼尔的这些作用与血糖控制无关,血糖控制在研究期间保持恒定。尽管索比尼尔改善糖尿病患者神经传导速度的作用较小,但这些发现表明多元醇途径活性导致糖尿病患者神经传导减慢。这些观察结果的临床适用性尚待确定,但它们鼓励进一步探索这种治疗或预防糖尿病性神经病变的方法。

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