显微神经学
医学
伤害感受器
伤害
麻醉
钙通道阻滞剂
止痛药
安慰剂
糖尿病神经病变
周围神经病变
药理学
钠通道阻滞剂
钙通道
神经病理性疼痛
内科学
钙
内分泌学
钠通道
糖尿病
受体
病理
心率
血压
化学
压力反射
有机化学
钠
替代医学
作者
Jordi Serra,W. Rachel Duan,Charles Locke,Romà Solà,Wei Liu,Wolfram Nothaft
出处
期刊:Pain
[Lippincott Williams & Wilkins]
日期:2015-05-30
卷期号:156 (11): 2175-2183
被引量:79
标识
DOI:10.1097/j.pain.0000000000000249
摘要
T-type calcium channels are a potential novel target for treatment of neuropathic pain such as painful diabetic neuropathy. ABT-639 is a peripherally acting highly selective T-type Ca(v)3.2 calcium channel blocker that has demonstrated analgesic efficacy in preclinical models and may have the potential to reduce spontaneous fiber activity. Microneurography is a unique technique that directly assesses the function of peripheral sensory afferents and measures abnormal spontaneous activity in single peripheral nociceptive C fibers. Abnormal spontaneous activity in C-nociceptors functions as a marker for spontaneous pain, as reduction of this activity could indicate analgesic efficacy. This randomized, double-blind controlled study evaluated the effects of a single 100-mg oral dose of ABT-639, compared with placebo, on abnormal spontaneous activity in peripheral C-nociceptors, measured for the first time by microneurography in adult patients with painful diabetic neuropathy. Lidocaine was included in this study and compared with placebo. Pharmacokinetics and safety of ABT-639 were evaluated. Thirty-nine patients were randomized, and a total of 56 analyzable C-nociceptors with spontaneous activity were identified in 34 patients. There were no significant differences in C-nociceptor activities after ABT-639 treatment vs placebo. Similar findings were observed for lidocaine vs placebo. There were no clinically significant findings in the safety of ABT-639. Further research of T-type Ca(v)3.2 calcium channels as potential treatment targets for painful diabetic neuropathy is warranted. The utilization of microneurography as a means to measure abnormal activity in C-nociceptors in human clinical studies opens new possibilities for future studies of compounds targeting peripheral nerve hyperexcitability. ClinicalTrials.gov identifier: NCT01589432.
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