Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, West Lafayette, USA.
Purdue Institute for Integrative Neuroscience, West Lafayette, USA.
Sci Rep. 2019 Feb 20;9(1):2430. doi: 10.1038/s41598-019-38852-9.
Current medications inadequately treat the symptoms of chronic pain experienced by over 50 million people in the United States, and may come with substantial adverse effects signifying the need to find novel treatments. One novel therapeutic target is the Transient Receptor Potential A1 channel (TRPA1), an ion channel that mediates nociception through calcium influx of sensory neurons. Drug discovery still relies heavily on animal models, including zebrafish, a species in which TRPA1 activation produces hyperlocomotion. Here, we investigated if this hyperlocomotion follows zebrafish TRPA1 pharmacology and evaluated the strengths and limitations of using TRPA1-mediated hyperlocomotion as potential preclinical screening tool for drug discovery. To support face validity of the model, we pharmacologically characterized mouse and zebrafish TRPA1 in transfected HEK293 cells using calcium assays as well as in vivo. TRPA1 agonists and antagonists respectively activated or blocked TRPA1 activity in HEK293 cells, mice, and zebrafish in a dose-dependent manner. However, our results revealed complexities including partial agonist activity of TRPA1 antagonists, bidirectional locomotor activity, receptor desensitization, and off-target effects. We propose that TRPA1-mediated hyperlocomotion in zebrafish larvae has the potential to be used as in vivo screening tool for novel anti-nociceptive drugs but requires careful evaluation of the TRPA1 pharmacology.
目前的药物无法充分缓解美国超过 5000 万人的慢性疼痛症状,而且可能会带来严重的不良反应,这表明我们需要寻找新的治疗方法。一种新的治疗靶点是瞬时受体电位 A1 通道(TRPA1),这是一种离子通道,通过感觉神经元的钙离子内流来介导伤害感受。药物发现仍然严重依赖于动物模型,包括斑马鱼,TRPA1 的激活会导致斑马鱼产生过度活跃的行为。在这里,我们研究了这种过度活跃是否符合斑马鱼 TRPA1 的药理学,并评估了将 TRPA1 介导的过度活跃作为潜在的临床前筛选工具用于药物发现的优缺点。为了支持该模型的表面有效性,我们使用钙测定法以及体内研究,在转染的 HEK293 细胞中对小鼠和斑马鱼的 TRPA1 进行了药理学表征。TRPA1 激动剂和拮抗剂分别以剂量依赖性方式激活或阻断 HEK293 细胞、小鼠和斑马鱼中的 TRPA1 活性。然而,我们的结果揭示了一些复杂性,包括 TRPA1 拮抗剂的部分激动剂活性、双向运动活性、受体脱敏和脱靶效应。我们提出,斑马鱼幼虫中的 TRPA1 介导的过度活跃具有作为新型抗伤害感受药物的体内筛选工具的潜力,但需要仔细评估 TRPA1 药理学。