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The mechanisms of glycemic variability accelerate diabetic central neuropathy and diabetic peripheral neuropathy in diabetic rats

机译:糖尿病大鼠血糖变异促进糖尿病中枢性神经病变和糖尿病外周神经病变的机制

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The effect of glycemic variability (GV) on diabetic neuropathy, including diabetic central neuropathy and diabetic peripheral neuropathy (DPN), and the involved mechanism are not fully understood. In this study, a fluctuant hyperglycemia rat model was induced by alternate intraperitoneal injections of glucose and insulin. To assess diabetic central neuropathy, step-down type passive avoidance tests were conducted, and the expression levels of p-Tau, T-Tau, p-GSK3 beta, GSK3 beta, p-Akt, and Akt in the hippocampus were measured. To assess DPN, the motor nerve conduction velocity (MNCV) was measured, and the microstructure of the sciatic nerve was observed. Additionally, the expression levels of oxidative stress and inflammation indicators were detected in the sciatic nerve. We observed that both learning and memory abilities were disrupted by GV. GV promoted Tau phosphorylation and inhibited the Akt/GSK3 beta pathway in the hippocampus. Additionally, GV weakened the MNCV of the sciatic nerve, and the structures of both the myelin sheath and the axons in the sciatic nerve were disrupted. GV also significantly reduced the expression of superoxide dismutase (SOD) and increased the expression levels of malondialdehyde (MDA), of proinflammatory cytokines (TNF-alpha and IL-6) and of NF-kappa B. In conclusion, the present study highlighted that GV might induce diabetic central neuropathy through the hyper-phosphorylation of Tau in the hippocampus by inhibiting the Akt/GSK3 beta pathway and that it may cause DPN through oxidative stress and inflammatory responses by activating the NF-kappa B pathway. (C) 2019 Elsevier Inc. All rights reserved.
机译:血糖变异性(GV)对糖尿病神经病变的影响,包括糖尿病中枢性神经病变和糖尿病周围神经病变(DPN),以及所涉及的机制尚未得到完全理解。在该研究中,通过腹膜内注射葡萄糖和胰岛素的交替诱导波动的高血糖大鼠模型。为了评估糖尿病中枢神经病变,进行降压型无源避免试验,并测量p-tau,t-tau,p-gsk3β,gsk3β,p-akt和hippocampus中的表达水平。为了评估DPN,测量运动神经传导速度(MNCV),并且观察到坐骨神经的微观结构。另外,在坐骨神经中检测到氧化应激和炎症指示剂的表达水平。我们观察到,学习和记忆能力都被GV扰乱了。 GV促进Tau磷酸化并抑制海马中的AKT / GSK3β途径。另外,GV削弱了坐骨神经的MNCV,并且坐骨神经鞘和坐骨神经中的轴突的结构被破坏。 GV还显着降低了超氧化物歧化酶(SOD)的表达,并增加了丙二醛(MDA)的表达水平,常炎细胞因子(TNF-α和IL-6)和NF-Kappa B的表达水平。总之,本研究强调了这一点通过抑制AKT /GSK3β途径,GV可以通过Hippocampus中Tau的超磷酸化诱导糖尿病中枢神经病,并且通过激活NF-Kappa途径,它可能引起DPN通过氧化应激和炎症反应。 (c)2019 Elsevier Inc.保留所有权利。

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