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HSV Delivery of a Ligand-regulated Endogenous Ion Channel Gene to Sensory Neurons Results in Pain Control Following Channel Activation

机译:HSV配体调节的内源性离子通道基因向感觉神经元的传递导致通道激活后的疼痛控制。

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摘要

Persistent pain remains a tremendous health problem due to both its prevalence and dearth of effective therapeutic interventions. To maximize pain relief while minimizing side effects, current gene therapy–based approaches have mostly exploited the expression of pain inhibitory products or interfered with pronociceptive ion channels. These methods do not enable control over the timing or duration of analgesia, nor titration to analgesic efficacy. Here, we describe a gene therapy strategy that potentially overcomes these limitations by providing exquisite control over therapy with efficacy in clinically relevant models of inflammatory pain. We utilize a herpes simplex viral (HSV) vector (vHGlyRα1) to express a ligand-regulated chloride ion channel, the glycine receptor (GlyR) in targeted sensory afferents; the subsequent exogenous addition of glycine provides the means for temporal and spatial control of afferent activity, and therefore pain. Use of an endogenous inhibitory receptor not normally present on sensory neurons both minimizes immunogenicity and maximizes therapeutic selectivity.
机译:由于持续性疼痛的发生率和缺乏有效的治疗干预措施,持续性疼痛仍然是一个巨大的健康问题。为了最大程度地减轻疼痛并最大程度地减少副作用,目前基于基因疗法的方法大多利用了疼痛抑制产物的表达或干扰了伤害感受性离子通道。这些方法不能控制镇痛的时间或持续时间,也不能滴定镇痛效果。在这里,我们描述了一种基因治疗策略,该策略通过在临床相关的炎性疼痛模型中提供对治疗的精确控制来克服这些局限性。我们利用单纯疱疹病毒(HSV)载体(vHGlyRα1)来表达针对配体调节的氯离子通道,即目标感官传入中的甘氨酸受体(GlyR);随后外源添加甘氨酸提供了时间和空间控制传入活动并因此控制疼痛的手段。通常在感觉神经元上不存在的内源性抑制性受体的使用既使免疫原性最小化又使治疗选择性最大化。

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