Gunthorpe M J, Rami H K, Jerman J C, Smart D, Gill C H, Soffin E M, Luis Hannan S, Lappin S C, Egerton J, Smith G D, Worby A, Howett L, Owen D, Nasir S, Davies C H, Thompson M, Wyman P A, Randall A D, Davis J B
Neurology and GI-CEDD, New Frontiers Science Park, GlaxoSmithKline, Harlow, Essex, CM19 5AW, UK.
Neuropharmacology. 2004 Jan;46(1):133-49. doi: 10.1016/s0028-3908(03)00305-8.
Vanilloid receptor-1 (TRPV1) is a non-selective cation channel, predominantly expressed by peripheral sensory neurones, which is known to play a key role in the detection of noxious painful stimuli, such as capsaicin, acid and heat. To date, a number of antagonists have been used to study the physiological role of TRPV1; however, antagonists such as capsazepine are somewhat compromised by non-selective actions at other receptors and apparent modality-specific properties. SB-366791 is a novel, potent, and selective, cinnamide TRPV1 antagonist isolated via high-throughput screening of a large chemical library. In a FLIPR-based Ca(2+)-assay, SB-366791 produced a concentration-dependent inhibition of the response to capsaicin with an apparent pK(b) of 7.74 +/- 0.08. Schild analysis indicated a competitive mechanism of action with a pA2 of 7.71. In electrophysiological experiments, SB-366791 was demonstrated to be an effective antagonist of hTRPV1 when activated by different modalities, such as capsaicin, acid or noxious heat (50 degrees C). Unlike capsazepine, SB-366791 was also an effective antagonist vs. the acid-mediated activation of rTRPV1. With the aim of defining a useful tool compound, we also profiled SB-366791 in a wide range of selectivity assays. SB-366791 had a good selectivity profile exhibiting little or no effect in a panel of 47 binding assays (containing a wide range of G-protein-coupled receptors and ion channels) and a number of electrophysiological assays including hippocampal synaptic transmission and action potential firing of locus coeruleus or dorsal raphe neurones. Furthermore, unlike capsazepine, SB-366791 had no effect on either the hyperpolarisation-activated current (I(h)) or Voltage-gated Ca(2+)-channels (VGCC) in cultured rodent sensory neurones. In summary, SB-366791 is a new TRPV1 antagonist with high potency and an improved selectivity profile with respect to other commonly used TRPV1 antagonists. SB-366791 may therefore prove to be a useful tool to further study the biology of TRPV1.
香草酸受体-1(TRPV1)是一种非选择性阳离子通道,主要由外周感觉神经元表达,已知其在检测辣椒素、酸和热等有害疼痛刺激中起关键作用。迄今为止,已有多种拮抗剂用于研究TRPV1的生理作用;然而,诸如辣椒平之类的拮抗剂在其他受体上存在非选择性作用以及明显的模式特异性特性,在一定程度上受到影响。SB-366791是一种新型、强效且选择性的肉桂酰胺类TRPV1拮抗剂,通过对大型化学文库进行高通量筛选分离得到。在基于荧光成像板读数器(FLIPR)的钙离子检测中,SB-366791对辣椒素反应产生浓度依赖性抑制,表观pK(b)为7.74±0.08。希尔德分析表明其作用机制为竞争性,pA2为7.71。在电生理实验中,当hTRPV1由辣椒素、酸或有害热(50摄氏度)等不同刺激激活时,SB-366791被证明是hTRPV1的有效拮抗剂。与辣椒平不同,SB-366791对rTRPV1的酸介导激活也是有效的拮抗剂。为了确定一种有用的工具化合物,我们还在广泛的选择性检测中对SB-366791进行了分析。SB-366791具有良好的选择性,在47种结合检测(包含多种G蛋白偶联受体和离子通道)以及包括海马突触传递和蓝斑或中缝背核神经元动作电位发放在内的多种电生理检测中几乎没有影响或无影响。此外,与辣椒平不同,SB-366791对培养的啮齿动物感觉神经元中的超极化激活电流(I(h))或电压门控钙通道(VGCC)均无影响。总之,SB-366791是一种新型TRPV1拮抗剂,相对于其他常用的TRPV1拮抗剂,具有高效力和改善的选择性。因此,SB-366791可能被证明是进一步研究TRPV1生物学的有用工具。