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Nerve electrophysiological changes in rats with early induced diabetes

机译:早期诱发糖尿病大鼠的神经电生理变化

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in rats with diabetes induced at weaning, pathological examinations have shown that the reduction of myelin thickness occurs earlier than axon size reduction. The aim of this study was to provide a detailed description of neurophysiological changes during nerve growth and maturation in rats with streptozotocin-induced diabetes in prepubertal stage. Five-day male Wistar rats received an injection of streptozotocin. Motor and sensory conduction velocities increased until 6.5 months in diabetic and control rats and at this age it became lower in diabetic rats. In diabetic rats, the amplitudes of the compound motor action potentials (CMAP) were tower by the 3 months and did not increase later. The amplitudes and areas of sensory action potentials (SNAP) increased until 9 months in both groups. SNAP duration decreased with ageing. Sensory peak 1 and peak 2 latencies became longer from 6.5 to 9 months in diabetic rats, with a longer latency difference between the 2 sensory peaks by 4 months. At 3 and 4 months of age, peak 1 and peak 2 latencies correlated with SNAP amplitude and duration in control rats but not in diabetic rats. In conclusion, in rats with early induced diabetes, the earliest electrophysiological impairments consist of lower CMAP amplitudes, and longer difference between latencies of sensory peaks 1 and 2. These sequential neurophysiological changes should be considered when testing new therapeutic approaches in diabetic neuropathy.
机译:在断奶诱导的糖尿病大鼠中,病理检查表明,髓鞘厚度的减少发生在轴突尺寸减小之前。这项研究的目的是详细描述青春期前链脲佐菌素诱发的糖尿病大鼠神经生长和成熟过程中的神经生理变化。五天的雄性Wistar大鼠注射链脲佐菌素。在糖尿病和对照大鼠中,运动和感觉传导速度一直增加到6.5个月,而在这个年龄,糖尿病大鼠中运动和感觉传导速度降低。在糖尿病大鼠中,复合运动动作电位(CMAP)的振幅在3个月之前达到峰值,以后没有增加。两组的感觉动作电位(SNAP)的幅度和面积均增加,直到9个月。 SNAP持续时间随着年龄的增长而减少。糖尿病大鼠的感觉峰1和峰2潜伏期从6.5个月延长至9个月,而两个感觉峰之间的潜伏期差异则延长了4个月。在3和4个月大时,对照组大鼠的峰值1和峰值2潜伏期与SNAP幅度和持续时间相关,而在糖尿病大鼠中则不相关。总之,在患有早期糖尿病的大鼠中,最早的电生理损伤包括较低的CMAP振幅和较长的感觉峰1和2潜伏期之间的差异。在测试糖尿病性神经病的新治疗方法时,应考虑这些连续的神经生理变化。

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