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Selective Blockade of HCN1/HCN2 Channels as a Potential Pharmacological Strategy Against Pain

机译:HCN1 / HCN2通道的选择性阻滞作为潜在的止痛药理策略

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摘要

A prominent role of hyperpolarization-activated, cyclic nucleotide-gated (HCN) channels has been suggested based on their expression and (dys)function in dorsal root ganglion (DRG) neurons, being likely involved in peripheral nociception. Using HCN blockers as antinociceptive drugs is prevented by the widespread distribution of these channels. However, tissue-specific expression of HCN isoforms varies significantly, HCN1 and HCN2 being considered as major players in DRG excitability. We characterized the pharmacological effect of a novel compound, MEL55A, able to block selectively HCN1/HCN2 isoforms, on DRG neuron excitability in-vitro and for its antiallodynic properties in-vivo. HEK293 cells expressing HCN1, HCN2, or HCN4 isoforms were used to verify drug selectivity. The pharmacological profile of MEL55A was tested on mouse DRG neurons by patch-clamp recordings, and in-vivo in oxaliplatin-induced neuropathy by means of thermal hypersensitivity. Results were compared to the non-isoform-selective drug, ivabradine. MEL55A showed a marked preference toward HCN1 and HCN2 isoforms expressed in HEK293, with respect to HCN4. In cultured DRG, MEL55A reduced Ih amplitude, both in basic conditions and after stimulation by forskolin, and cell excitability, its effect being quantitatively similar to that observed with ivabradine. MEL55A was able to relieve chemotherapy-induced neuropathic pain. In conclusion, selective blockade of HCN1/HCN2 channels, over HCN4 isoform, was able to modulate electrophysiological properties of DRG neurons similarly to that reported for classical Ih blockers, ivabradine, resulting in a pain-relieving activity. The availability of small molecules with selectivity toward HCN channel isoforms involved in nociception might represent a safe and effective strategy against chronic pain.
机译:根据超极化激活的环状核苷酸门控(HCN)通道在背根神经节(DRG)神经元中的表达和功能异常,可能发挥了重要作用,可能参与了外周伤害感受。这些通道的广泛分布阻止了使用HCN阻滞剂作为抗伤害药。但是,HCN亚型的组织特异性表达差异很大,HCN1和HCN2被认为是DRG兴奋性的主要参与者。我们表征了一种新型化合物MEL55A的药理作用,它能够选择性地阻断HCN1 / HCN2亚型,对DRG神经元具有体外兴奋性,并具有体内抗变态反应特性。表达HCN1,HCN2或HCN4同种型的HEK293细胞用于验证药物选择性。通过膜片钳记录在小鼠DRG神经元上测试了MEL55A的药理特性,并通过热超敏反应在奥沙利铂诱导的神经病中进行了体内测试。将结果与非亚型选择性药物伊伐布雷定进行比较。相对于HCN4,MEL55A对HEK293中表达的HCN1和HCN2同工型表现出明显的偏爱。在培养的DRG中,MEL55A在碱性条件下以及毛喉素刺激后的Ih振幅均降低,并且细胞兴奋性降低,其作用在数量上与伊伐布雷定相似。 MEL55A能够缓解化疗引起的神经性疼痛。总之,在HCN4亚型上选择性阻断HCN1 / HCN2通道能够调节DRG神经元的电生理特性,与报道的经典Ih阻断剂伊伐布雷定相似,从而可减轻疼痛。对伤害感受中涉及的HCN通道亚型具有选择性的小分子的可用性可能代表了针对慢性疼痛的安全有效策略。

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