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Simple pharmacological test battery to assess efficacy and side effect profile of centrally acting muscle relaxant drugs.

机译:简单的药理学测试电池可评估中枢性肌肉松弛药的功效和副作用。

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INTRODUCTION: Centrally muscle relaxants (CMRs) are used mainly for treating muscle spasticities of neurological origin, and painful muscle spasms due to rheumatologic conditions. Their use is frequently associated with dose-limiting adverse effects. New drugs with improved side-effect characteristics are badly needed. However, there is no general agreement in the pharmacological literature on what methods are adequate to assess CMR effect and side effects in behaving rodents, which may hinder the development of new drugs. Here we report on the establishment of a simple pharmacological test battery, which was used to compare efficacies and side effect profiles of 11 compounds with central muscle relaxant action, in mice (intraperitoneal application). METHODS: For measuring muscle relaxant activity, (1) a new tremor model (GYKI 20039-induced tremor) and (2) the morphine-induced Straub-tail assay were used. The former, newly developed method has advantages over harmaline- or LON-954-induced tremor. For detecting side effect liability (ataxia, sedation, impairment of voluntary motor functions), (1) the rota-rod test, (2) measurement of spontaneous motility, (3) the weight-lifting test and (4) the thiopental sleep test were used. RESULTS: Among the 11 muscle relaxant compounds tested (tolperisone, eperisone, silperisone, diazepam, baclofen, tizanidine, afloqualon, mephenesin, zoxazolamine, memantine and carisoprodol), the calculated safety ratios (i.e. ID50 for side effect/ID50 for muscle relaxant effect) varied in a wide range. Silperisone seems to have the most advantageous profile (safety ratios range between 1.7 and 3.3 in the different pairs of assays) compared to the other tested drugs with lower (one or more ratios below 1.5, and often far below 1) and more varying ratios. DISCUSSION: Therapeutic indices calculated from the results of these in vivo experiments for the clinically used muscle relaxants are in agreement with their adverse effect profiles in humans. Thus the present test battery seems to be suitable for predicting the possible clinical utility of newly synthesized compounds.
机译:简介:中央肌肉松弛剂(CMR)主要用于治疗神经系统性肌肉痉挛和风湿病引起的疼痛性肌肉痉挛。它们的使用经常与剂量限制的副作用有关。迫切需要具有改善的副作用特性的新药。但是,在药理学文献中,关于哪种方法足以评估啮齿动物的CMR效应和副作用尚无普遍共识,这可能会阻碍新药的开发。在这里,我们报告建立一个简单的药理学测试电池,该电池用于比较11种具有中枢肌肉松弛作用的化合物在小鼠(腹膜内应用)的功效和副作用。方法:为了测量肌肉松弛活性,(1)使用新的震颤模型(GYKI 20039诱发的震颤)和(2)吗啡诱发的Straub-tail试验。前一种新开发的方法比harmaline或LON-954诱发的震颤具有优势。为了检测副作用(共济失调,镇静,自愿运动功能受损),(1)旋转杆测试,(2)自发运动的测量,(3)举重测试,(4)硫喷妥性睡眠测试被使用。结果:在所测试的11种肌肉松弛剂化合物(托哌酮,乙哌立松,西哌立酮,地西epa,巴氯芬,替扎尼定,阿氟洛酮,美芬辛,唑沙唑胺,美金刚和卡立普洛多)中,计算出的安全比(即,ID50为副作用/ ID50为肌肉松弛作用)范围广泛。与具有较低比率(一个或多个比率低于1.5,通常远低于1)和比率变化较大的其他受试药物相比,西哌立酮似乎具有最有利的特性(安全比在不同的检测对中介于1.7和3.3之间)。讨论:从这些体内实验结果得出的临床使用的肌肉松弛剂的治疗指数与其在人体中的不良反应相吻合。因此,本测试电池似乎适合于预测新合成化合物的可能临床用途。

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