Carlen P L, Gurevich N, Zhang L, Wu P H, Reynaud D, Pace-Asciak C R
Department of Pharmacology, Hospital for Sick Children, University of Toronto, Ontario, Canada.
Neuroscience. 1994 Feb;58(3):493-502. doi: 10.1016/0306-4522(94)90075-2.
Metabolites of arachidonic acid are known to be formed in the mammalian central nervous system. When intact hippocampal slices were incubated in artificial cerebrospinal fluid, 12-hydroxyeicosatetraenoic acid and two isomers of hepoxilin A3 (8R and 8S) were released as measured by gas chromatography-mass spectrometry. These compounds were released in greater amounts in the presence of noradrenaline or when arachidonic acid was added to the slices. The neuronal actions of chemically derived preparations of 8R and 8S hepoxilins and the glutathione conjugate, hepoxilin A3-C, were examined using intracellular and whole-cell electrophysiological recordings in hippocampal CA1 neurons in vitro. All compounds had the excitatory effects of lowering spike threshold and decreasing spike frequency adaptation, and the inhibitory actions of membrane hyperpolarization, enhanced postspike train afterhyperpolarizations and increased inhibitory postsynaptic potentials or currents. A synthetic analog of hepoxilin A3-C, in which the glutathione moiety is placed at carbon position 9 instead of carbon position 11 as in hepoxilin A3-C, was inactive. The actions of the hepoxilins showed a sharp dose-response relationship, with minimal threshold or no effect at 3 nM (n = 21) and maximal effects at 10 nM (n = 33). There were no significant differences between the responses to either the 8R or 8S isomers, or between hepoxilin A3 and hepoxilin A3-C. These data suggest that hepoxilins formed by the brain have significant neuromodulatory actions.
已知花生四烯酸的代谢产物在哺乳动物中枢神经系统中形成。当完整的海马切片在人工脑脊液中孵育时,通过气相色谱 - 质谱法测定,12 - 羟基二十碳四烯酸和两种hepoxilin A3异构体(8R和8S)被释放出来。在去甲肾上腺素存在下或向切片中添加花生四烯酸时,这些化合物的释放量更大。使用体外海马CA1神经元的细胞内和全细胞膜片钳电生理记录,研究了化学合成的8R和8S hepoxilins制剂以及谷胱甘肽共轭物hepoxilin A3 - C的神经元作用。所有化合物都具有降低动作电位阈值和减少动作电位频率适应性的兴奋作用,以及膜超极化、增强动作电位串后的超极化和增加抑制性突触后电位或电流的抑制作用。一种hepoxilin A3 - C的合成类似物,其中谷胱甘肽部分位于碳9位而不是像hepoxilin A3 - C那样位于碳11位,没有活性。hepoxilins的作用呈现出明显的剂量 - 反应关系,在3 nM时阈值最低或无作用(n = 21),在10 nM时作用最大(n = 33)。对8R或8S异构体的反应之间,或hepoxilin A3和hepoxilin A3 - C之间没有显著差异。这些数据表明大脑形成的hepoxilins具有显著的神经调节作用。