Minocycline attenuates the development of diabetic neuropathy by inhibiting spinal cord Notch signaling in rat

米诺环素 医学 Notch信号通路 神经传导速度 坐骨神经 脊髓 神经病理性疼痛 糖尿病神经病变 小胶质细胞 药理学 链脲佐菌素 麻醉 受体 内分泌学 内科学 糖尿病 炎症 化学 生物化学 精神科 抗生素
作者
Cheng‐Ta Yang,Jie Gao,Banglin Wu,Nuo Yan,Hui Li,Yingjie Ren,Yufei Kan,Jiamin Liang,Yang Jiao,Yonghao Yu
出处
期刊:Biomedicine & Pharmacotherapy [Elsevier BV]
卷期号:94: 380-385 被引量:29
标识
DOI:10.1016/j.biopha.2017.07.078
摘要

We studied the effects of minocycline (an inhibitor of microglial activation) on the expression and activity of Notch-1 receptor, and explored the therapeutic efficacy of minocycline combined with Notch inhibitor DAPT in the treatment of diabetic neuropathic pain (DNP). Diabetic rat model was established by intraperitoneal injection (ip) of Streptozotocin (STZ). Expression and activity of Notch-1 and expression of macrophage/microglia marker Iba-1 were detected by WB. Diabetes induction significantly attenuated sciatic nerve conduction velocity, and dramatically augmented the expression and the activity of Notch-1 in the lumbar enlargement of the spinal cord. Minocycline treatment, however, accelerated the decreased conduction velocity of sciatic nerve and suppressed Notch-1expression and activity in diabetic rats. Similar to DAPT treatment, minocycline administration also prolonged thermal withdrawal latency (TWL) and increase mechanical withdrawal threshold (MWT) in diabetic rats in response to heat or mechanical stimulation via inhibition the expression and the activity of Notch-1 in spinal cord. Combination of DAPT and minocycline further inhibited Notch-1 receptor signaling and reduce neuropathic pain exhibited as improved TWL and MWT. Our study revealed a novel mechanism of Notch-1 receptor inhibition in spinal cord induced by minocycline administration, and suggested that the combination of minocycline and DAPT has the potential to treat DNP.

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