首页> 外文期刊>Molecular pharmacology. >TTA-P2 is a potent and selective blocker of T-type calcium channels in rat sensory neurons and a novel antinociceptive agent.
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TTA-P2 is a potent and selective blocker of T-type calcium channels in rat sensory neurons and a novel antinociceptive agent.

机译:TTA-P2是大鼠感觉神经元中一种有效且选择性的T型钙通道阻滞剂,是一种新型的抗伤害感受药。

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Several agents that are preferential T-type calcium (T-channel) blockers have shown promise as being effective in alleviating acute and chronic pain, suggesting an urgent need to identify even more selective and potent T-channel antagonists. We used small, acutely dissociated dorsal root ganglion (DRG) cells of adult rats to study the in vitro effects of 3,5-dichloro-N-[1-(2,2-dimethyl-tetrahydro-pyran-4-ylmethyl)-4-fluoro-piperidin-4 -ylmethyl]-benzamide (TTA-P2), a derivative of 4-aminomethyl-4-fluoropiperdine, on T currents, as well as other currents known to modulate pain transmission. We found that TTA-P2 potently and reversibly blocked DRG T currents with an IC(50) of 100 nM and stabilized channel in the inactive state, whereas high-voltage-activated calcium and sodium currents were 100- to 1000-fold less sensitive to channel blocking effects. In in vivo studies, we found that intraperitoneal injections of 5 or 7.5 mg/kg TTA-P2 reduced pain responses in mice in phases 1 and 2 of the formalin test. Furthermore, TTA-P2, at 10 mg/kg i.p., selectively and completely reversed thermal hyperalgesia in diabetic rats treated with streptozocin but had no effect on the nociceptive response of healthy animals. The antihyperalgesic effects of TTA-P2 in diabetic rats were completely abolished by administration of oligonucleotide antisense for Ca(V)3.2 isoform of T channels. Thus, TTA-P2 is not only the most potent and selective blocker of T channels in sensory neurons yet described, but it also demonstrates the potential for the pharmacological effectiveness of this approach in addressing altered nociceptive responses in animal models of both inflammatory and neuropathic pain.
机译:几种优先使用T型钙(T通道)阻滞剂的药物已显示出在缓解急性和慢性疼痛方面有效的希望,这表明迫切需要鉴定更具选择性和效力的T通道拮抗剂。我们使用成年大鼠急性解离的小背根神经节细胞(DRG)来研究3,5-二氯-N- [1-(2,2-二甲基-四氢-吡喃-4-基甲基)- T电流以及已知调节疼痛传播的其他电流产生的4-氨基甲基-4-氟哌啶的衍生物4-氟哌啶丁-4-基甲基]-苯甲酰胺(TTA-P2)。我们发现TTA-P2可以有效地和可逆地阻断DRG T电流,其IC(50)为100 nM,并且通道处于非活动状态时处于稳定状态,而高压激活的钙和钠电流对DRG T电流的敏感度低100到1000倍。通道阻塞效应。在体内研究中,我们发现在福尔马林测试的第1阶段和第2阶段,腹膜内注射5或7.5 mg / kg TTA-P2可以减轻小鼠的疼痛反应。此外,在用链脲佐菌素治疗的糖尿病大鼠中,以10mg / kg的腹膜内注射TTA-P2选择性和完全逆转热痛觉过敏,但对健康动物的伤害感受没有影响。通过对T通道Ca(V)3.2亚型进行寡核苷酸反义治疗,可完全消除TTA-P2在糖尿病大鼠中的抗痛觉过敏作用。因此,TTA-P2不仅是迄今已描述的感觉神经元中最有效和选择性的T通道阻滞剂,而且还证明了该方法在解决炎症性和神经性疼痛动物模型中改变的伤害性反应方面的药理效力潜力。

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