Department of Biochemistry and Molecular Biology and Centre de Biotecnologia i Teràpia Gènica, Universitat Autònoma de Barcelona, Bellaterra, Spain.
J Peripher Nerv Syst. 2011 Sep;16(3):213-27. doi: 10.1111/j.1529-8027.2011.00345.x.
The non-obese diabetic (NOD) mouse was suggested as an adequate model for diabetic autonomic neuropathy. We evaluated sensory-motor neuropathy and nerve regeneration following sciatic nerve crush in NOD males rendered diabetic by multiple low doses of streptozotocin, in comparison with similarly treated Institute for Cancer Research (ICR) mice, a widely used model for type I diabetes. Neurophysiological values for both strains showed a decline in motor and sensory nerve conduction velocity at 7 and 8 weeks after induction of diabetes in the intact hindlimb. However, amplitudes of compound muscle and sensory action potentials (CMAPs and CNAPs) were significantly reduced in NOD but not in ICR diabetic mice. Morphometrical analysis showed myelinated fiber loss in highly hyperglycemic NOD mice, but no significant changes in fiber size. There was a reduction of intraepidermal nerve fibers, more pronounced in NOD than in ICR diabetic mice. Interestingly, aldose reductase and poly(ADP-ribose) polymerase (PARP) activities were increased already at 1 week of hyperglycemia, persisting until the end of the experiment in both strains. Muscle and nerve reinnervation was delayed in diabetic mice following sciatic nerve crush, being more marked in NOD mice. Thus, diabetes of mid-duration induces more severe peripheral neuropathy and slower nerve regeneration in NOD than in ICR mice.
非肥胖型糖尿病(NOD)小鼠被认为是糖尿病自主神经病变的合适模型。我们评估了 NOD 雄性糖尿病模型(通过多次小剂量链脲佐菌素诱导)和作为 I 型糖尿病广泛模型的 ICR 小鼠坐骨神经挤压后的感觉运动神经病和神经再生。两种品系的神经生理值在诱导糖尿病后的 7 和 8 周时,在后肢完整状态下运动和感觉神经传导速度均下降。然而,在 NOD 糖尿病小鼠而非 ICR 糖尿病小鼠中,复合肌肉和感觉动作电位(CMAP 和 CNAP)的幅度显著降低。形态计量学分析显示高度高血糖的 NOD 小鼠有髓纤维丢失,但纤维大小无明显变化。糖尿病小鼠的表皮内神经纤维减少,NOD 比 ICR 糖尿病小鼠更明显。有趣的是,醛糖还原酶和多(ADP-核糖)聚合酶(PARP)活性在高血糖的第 1 周就已经增加,在两种品系中持续到实验结束。坐骨神经挤压后,糖尿病小鼠的肌肉和神经再支配延迟,NOD 小鼠更为明显。因此,中程糖尿病导致 NOD 小鼠比 ICR 小鼠更严重的周围神经病变和更缓慢的神经再生。