首页> 外文期刊>The Journal of Physiology >Activation of transient receptor potential vanilloid 1 (TRPV1) by resiniferatoxin.
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Activation of transient receptor potential vanilloid 1 (TRPV1) by resiniferatoxin.

机译:树脂毒素激活瞬态受体电位香草酸1(TRPV1)。

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Transient receptor potential vanilloid 1 (TRPV1) is a Ca(2+) permeable non-selective cation channel activated by physical and chemical stimuli. Resiniferatoxin (RTX), an ultrapotent agonist of TRPV1, is under investigation for treatment of urinary bladder hyper-reflexia and chronic pain conditions. Here, we have determined the characteristics of RTX-induced responses in cells expressing native and cloned rat TRPV1. Whole-cell currents increase with repeated application of submaximal concentrations of RTX until a maximal response is attained and do not deactivate even after prolonged washout. Interestingly, the rate of activation and block by capsazepine of RTX-induced currents are significantly slower than for capsaicin-induced currents. RTX-induced whole-cell currents are outwardly rectifying, but to a lesser extent than capsaicin-induced currents. RTX-induced single channel currents exhibit multiple conductance states and outward rectification. The open probability (P(o)) of RTX-induced currents is higher at all potentials as compared to capsaicin-induced currents, which showed a strong voltage-dependent decrease at negative potentials. Single-channel kinetic analyses reveal that open-time distribution of RTX-induced currents can be fitted with three exponential components at negative and positive potentials. The areas of distribution of the longer open time constants are significantly larger than capsaicin-induced currents. The closed-time distribution of RTX-induced currents can be fitted with three exponential components as compared to capsaicin-induced currents, which require four exponential components. Current-clamp experiments reveal that low concentrations of RTX caused a slow and sustained depolarization beyond threshold while generating few action potentials. Concentrations of capsaicin required for the same extent of depolarization generated a significantly greater number of action potentials. These properties of RTX may play a role in its clinical usefulness.
机译:瞬态受体电位香草酸1(TRPV1)是由物理和化学刺激激活的Ca(2+)渗透性非选择性阳离子通道。 TRPV1的超强效激动剂Resiniferatoxin(RTX)正在研究中,用于治疗膀胱过度反射症和慢性疼痛。在这里,我们确定了RTX诱导表达天然和克隆大鼠TRPV1的细胞中的响应的特征。反复施加次最大浓度的RTX会增加全细胞电流,直到达到最大反应为止,即使经过长时间冲洗也不会失活。有趣的是,辣椒素诱导的电流比辣椒素诱导的电流活化和阻断的速度慢得多。 RTX诱导的全细胞电流向外整流,但程度比辣椒素诱导的电流小。 RTX诱导的单通道电流表现出多种电导状态和向外整流。与辣椒素诱导的电流相比,RTX诱导的电流在所有电位下的打开概率(P(o))更高,后者在负电位下显示出与电压有关的强烈下降。单通道动力学分析表明,RTX感应电流的开放时间分布可以与正负电位的三个指数分量拟合。较长的开放时间常数的分布面积明显大于辣椒素诱导的电流。与辣椒素感应电流相比,RTX感应电流的关闭时间分布可以拟合三个指数分量,而辣椒素感应电流需要四个指数分量。电流钳实验表明,低浓度的RTX会导致缓慢而持续的去极化,超过阈值,同时产生的动作电位很小。相同程度的去极化所需的辣椒素浓度可产生明显更多的动作电位。 RTX的这些特性可能在其临床实用性中起作用。

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