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Analgesia and unwanted benzodiazepine effects in point-mutated mice expressing only one benzodiazepine-sensitive GABAA receptor subtype

机译:在仅表达一种对苯二氮卓敏感的GABAA受体亚型的点突变小鼠中的镇痛作用和有害的苯二氮卓作用

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摘要

Agonists at the benzodiazepine-binding site of GABAA receptors (BDZs) enhance synaptic inhibition through four subtypes (α1, α2, α3 and α5) of GABAA receptors (GABAAR). When applied to the spinal cord, they alleviate pathological pain; however, insufficient efficacy after systemic administration and undesired effects preclude their use in routine pain therapy. Previous work suggested that subtype-selective drugs might allow separating desired antihyperalgesia from unwanted effects, but the lack of selective agents has hitherto prevented systematic analyses. Here we use four lines of triple GABAAR point-mutated mice, which express only one benzodiazepine-sensitive GABAAR subtype at a time, to show that targeting only α2GABAARs achieves strong antihyperalgesia and reduced side effects (that is, no sedation, motor impairment and tolerance development). Additional pharmacokinetic and pharmacodynamic analyses in these mice explain why clinically relevant antihyperalgesia cannot be achieved with nonselective BDZs. These findings should foster the development of innovative subtype-selective BDZs for novel indications such as chronic pain.
机译:GABAA受体(BDZs)的苯二氮卓结合位点的激动剂通过GABAA受体(GABAAR)的四种亚型(α1,α2,α3和α5)增强突触抑制。当应用于脊髓时,它们可以减轻病理性疼痛。但是,全身性给药后疗效不足和不良作用使它们无法用于常规疼痛治疗。先前的工作表明,亚型选择性药物可能使所需的抗痛觉过敏与不良作用分离开来,但是迄今为止,缺乏选择性药物已经阻止了系统的分析。在这里,我们使用四行三联GABAAR点突变小鼠,它们一次仅表达一种对苯二氮卓敏感的GABAAR亚型,以显示仅靶向α2GABAAR即可实现强抗痛觉过敏和减少的副作用(即没有镇静,运动障碍和耐受性开发)。在这些小鼠中进行的其他药代动力学和药效学分析解释了为什么非选择性BDZ无法实现临床上相关的抗痛觉过敏。这些发现应促进针对诸如慢性疼痛等新适应症的创新性亚型选择性BDZ的开发。

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