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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Independent alterations in the central and peripheral somatosensory pathways in rat diabetic neuropathy.
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Independent alterations in the central and peripheral somatosensory pathways in rat diabetic neuropathy.

机译:大鼠糖尿病性神经病中枢和外周体感通路的独立改变。

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Peripheral and central diabetic neuropathies were studied in streptozotocin-diabetic rats, using behavioral, biochemical and electrophysiological techniques. Diabetic rats showed thermal hypoalgesia and decreasing motor nerve conduction velocity at 4 and 8 weeks of diabetes. In addition, amplitude of the evoked potential recorded in primary somatosensory cortex after stimulation of the sciatic nerve was markedly reduced at 8 weeks of diabetes. This decrease was accompanied by decreases in GluR2/3 AMPA receptor subunits. These changes seem to be specific to the somatosensory system and to originate in higher centers since they were not present in the hippocampus and were not observed at the level of gracilis nucleus. Insulin-like growth factor I (IGF-I) treatment reversed the reduced thermal sensitivity and peripheral nerve conduction velocity but did not reverse changes in the CNS, suggesting that once initiated, both anomalies may develop independently in this model of diabetic neuropathy. In conclusion, the results indicate that diabetes induces a wide spectrum of alterations in the central somatosensory system that are independent of the decreases in peripheral sensory transmission that could be responsible for the disturbances in somatosensory perception observed in diabetes.
机译:使用行为,生化和电生理技术在链脲佐菌素-糖尿病大鼠中研究了周围和中枢糖尿病性神经病。糖尿病大鼠在糖尿病的第4周和第8周表现出热痛觉过敏和运动神经传导速度降低。此外,在糖尿病的第8周,坐骨神经受到刺激后,在初级体感皮层中记录的诱发电位的幅度明显降低。这种减少伴随着GluR2 / 3 AMPA受体亚基的减少。这些变化似乎是特定于体感系统的,并且起源于较高的中心,因为它们不存在于海马体中,并且在鞭毛核的水平上未观察到。胰岛素样生长因子I(IGF-I)治疗可逆转降低的热敏感性和周围神经传导速度,但不能逆转中枢神经系统的变化,这表明一旦开始,这两种异常可能在该糖尿病性神经病模型中独立发展。总之,结果表明,糖尿病引起中央体感系统的广泛变化,而这种变化与可能导致糖尿病中观察到的体感知觉障碍的外周感觉传递降低无关。

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