Mong S, Wu H L, Miller J, Hall R F, Gleason J G, Crooke S T
Mol Pharmacol. 1987 Aug;32(1):223-9.
SKF 104353 (2(S)-hydroxyl-3(R)-carboxyethylthio)-3-[2-(8-phenyloctyl) phenyl] propanoic acid) is a synthetic structural analog of leukotrienes D4 and E4 (LTD4, LTE4). This compound binds to guinea pig and human lung LTD4 receptors with affinities (Ki) of 5 +/- 2 and 10 +/- 3 nM, respectively. The Ki values of a reference compound, FPL 55712, were 2200 and 4500 nM, respectively, approximately 400- and 500-fold less effective than SKF 104353. LTD4- and LTE4-induced biosynthesis of thromboxane B2 has been shown to be mediated by LTD4 receptors in guinea pig lung in vitro. SKF 104353 did not induce synthesis of TxB2 in this system at concentrations of 1-20 microM. When SKF 104353 and increasing concentrations of LTD4 were incubated with guinea pig lung, the dose response curve of LTD4-induced TxB2 biosynthesis was shifted to the right with a -log[KB] = 8.4 +/- 0.2. LTD4-induced phosphatidylinositol (PI) hydrolysis in guinea pig lung has been shown to be the major signal transduction mechanism. In this system, SKF 104353 (1-20 microM) did not promote PI hydrolysis. Pretreatment of the [3H]myo-inositol-labeled guinea pig lung with SKF 104353 shifted the LTD4-induced PI hydrolysis dose response curve to the right, indicating that SKF 104353 inhibited LTD4 receptor-mediated intracellular second messenger formation. These results demonstrate that SKF 104353 is a high affinity, specific LTD4 receptor antagonist. It inhibited LTD4-induced PI hydrolysis and TxB2 biosynthesis in guinea pig lung. SKF 104353 may prove to be an important research tool for research on the activities of leukotrienes and of value therapeutically in the treatment of leukotriene-mediated diseases.
SKF 104353(2(S)-羟基-3(R)-羧乙基硫基)-3-[2-(8-苯基辛基)苯基]丙酸)是白三烯D4和E4(LTD4、LTE4)的合成结构类似物。该化合物与豚鼠和人肺LTD4受体结合,亲和力(Ki)分别为5±2和10±3 nM。参考化合物FPL 55712的Ki值分别为2200和4500 nM,效力约比SKF 104353低400倍和500倍。已表明LTD4和LTE4诱导的血栓素B2生物合成在体外由豚鼠肺中的LTD4受体介导。在该系统中,浓度为1-20 microM时,SKF 104353不会诱导TxB2的合成。当SKF 104353与浓度不断增加的LTD4一起与豚鼠肺孵育时,LTD4诱导的TxB2生物合成的剂量反应曲线向右移动,-log[KB]=8.4±0.2。已表明LTD4诱导的豚鼠肺磷脂酰肌醇(PI)水解是主要的信号转导机制。在该系统中,SKF 104353(1-20 microM)不会促进PI水解。用SKF 104353对[3H]肌醇标记的豚鼠肺进行预处理,可使LTD4诱导的PI水解剂量反应曲线向右移动,表明SKF 104353抑制LTD4受体介导的细胞内第二信使形成。这些结果表明SKF 104353是一种高亲和力、特异性的LTD4受体拮抗剂。它抑制豚鼠肺中LTD4诱导的PI水解和TxB2生物合成。SKF 104353可能被证明是研究白三烯活性的重要研究工具,在治疗白三烯介导的疾病方面具有治疗价值。