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首页> 外文期刊>The Egyptian Journal of Hospital Medicine >Blockage of HCN Channels with ZD7288 Attenuates Mechanical Hypersensitivity in Rats Model of Diabetic Neuropathy
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Blockage of HCN Channels with ZD7288 Attenuates Mechanical Hypersensitivity in Rats Model of Diabetic Neuropathy

机译:HCN通道堵塞具有ZD7288的HCN通道衰减大鼠糖尿病神经病变的大鼠模型中的机械超敏反应

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Background: Diabetes is a chronic condition that affects millions of people worldwide. The disease can have severeimpact on many systems of the human body particularly the nervous system. Indeed, chronic peripheral nerve pain, also known as peripheral neuropathic pain (NP), is the most common complication caused by diabetes. There have existed preclinical researches that were performed using different types of Rodents as models of Chronic Pain. Such studies have proven that hypersensitivity to pain is caused, at least partially, by increased excitability of primary afferent dorsal root ganglion (DRG) neurons that send the sensory information from the periphery to the brain. However, the mechanism of this hyperexcitability is yet to be known. Aims: The primary aim of the continuing work is to examine the hypothesis that Hyperpolarization-activated Cyclic Nucleotide gated (HCN) channels (that are known to regulate excitability of the neurons) are involved in the pathophysiology of diabetic neuropathic pain (DNP). Methods and Results: To examine this hypothesis, we used a rat model of diabetic neuropathy by 60 mg/kg, i.p., of (streptozotocin (STZ), a toxin of pancreatic -cells that release insulin), and tested the effects of blocking the HCN channels with a selective blocker, ZD7288, on two pain behaviours (mechanical hypersensitivity/allodynia, and heat hypersensitivity/hyperalgesia) in these STZ treated rats. The results showed that intraplantar administration of ZD7288 (100 M) reduced mechanical allodynia but not heat hyperalgesia. Conclusions: The results are in agreement with previous investigations which used other models of chronic pain, and suggest that HCN channels may be a good target for developing new analgesics (pain killers) for chronic pain.
机译:背景:糖尿病是一种慢性病,影响全球数百万人。这种疾病可以在人体的许多系统上担保,特别是神经系统。实际上,慢性周围神经疼痛,也称为周围神经性疼痛(NP),是糖尿病造成的最常见的并发症。存在使用不同类型的啮齿动物作为慢性疼痛的模型进行的临床前研究。这些研究证明,至少部分地通过将来自周边到大脑的初始侵袭性的初始神经节(DRG)神经元的兴奋性增加,引起对疼痛的过敏性。然而,这种过度尺寸的机制尚不知道。目的:持续工作的主要目的是检查假极化活化的环状核苷酸门控(HCN)通道(已知对神经元的兴奋性)的假设参与糖尿病神经治疗的病理生理学(DNP)。方法和结果:为了检查这一假设,我们使用了60mg / kg,IP的糖尿病神经病变的大鼠模型(链脲佐菌素(STZ),胰岛素的胰腺 - 释放胰岛素的毒素),并测试了阻塞的影响在这些STZ处理的大鼠中,具有选择性阻滞剂,ZD7288的选择性阻滞剂ZD7288(机械超敏反/ Allodynia和热超敏性/痛觉)。结果表明,血液植入物施用ZD7288(100米)减少机械异常性疼痛,但不热痛觉过度。结论:结果与先前的研究达成协议,使用其他模型的慢性疼痛模型,并表明HCN通道可能是开发新镇痛药(止痛药)慢性疼痛的良好目标。

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