Bergeron R, Debonnel G
Department of Psychiatry, McGill University, Montreal, Quebec, Canada.
Psychopharmacology (Berl). 1997 Feb;129(3):215-24. doi: 10.1007/s002130050183.
Several high affinity sigma (sigma) ligands, such as DTG, JO-1784, (+)-pentazocine, BD-737 and L-687,384, administered at low doses act as agonists by potentiating N-methyl-D-aspartate (NMDA)-induced activation of pyramidal neurons in the CA3 region of the rat dorsal hippocampus. This potentiation is dose-dependent at doses between 1 and 1000 micrograms/kg, IV but bell-shaped dose-response curves are obtained. Other sigma ligands like haloperidol, BMY-14802, (+)3-PPP and NE-100 administered at low doses act as sigma antagonists, since they do not modify the NMDA response but suppress the potentiation of the NMDA response induced by sigma agonists. Because high doses of the sigma agonists do not potentiate the NMDA response, the present experiments were undertaken to assess if, at high doses, these sigma ligands could also act as sigma antagonists and suppress the potentiation induced by low doses of sigma agonists. High doses of DTG, JO-1784, BD-737, and L-687,384, administered acutely, had an effect similar to that of low doses of haloperidol, by suppressing and preventing the potentiation induced by low doses of DTG, JO-1784, BD-737, L-687,384 and (+)-pentazocine. High doses of (+)-pentazocine suppressed the effect of a low dose of (+)-pentazocine but did not affect the potentiation induced by a low dose of the other sigma agonists. The potentiation induced by a low dose of a sigma 1 agonist was not further increased by the subsequent administration of another low dose of a sigma 1 agonist. All together, these results strongly suggest that more than two subtypes of sigma receptors exist in the CNS.
几种高亲和力的σ配体,如DTG、JO-1784、(+)-喷他佐辛、BD-737和L-687,384,低剂量给药时通过增强N-甲基-D-天冬氨酸(NMDA)诱导的大鼠背侧海马CA3区锥体神经元激活而发挥激动剂作用。这种增强在静脉注射1至1000微克/千克的剂量范围内呈剂量依赖性,但得到的是钟形剂量反应曲线。其他σ配体如氟哌啶醇、BMY-14802、(+)3-PPP和NE-100低剂量给药时作为σ拮抗剂起作用,因为它们不改变NMDA反应,但抑制由σ激动剂诱导的NMDA反应增强。由于高剂量的σ激动剂不能增强NMDA反应,因此进行了本实验以评估在高剂量时,这些σ配体是否也可作为σ拮抗剂并抑制低剂量σ激动剂诱导的增强作用。急性给予高剂量的DTG、JO-1784、BD-737和L-687,384,通过抑制和预防低剂量的DTG、JO-1784、BD-737、L-687,384和(+)-喷他佐辛诱导的增强作用,产生了与低剂量氟哌啶醇类似的效果。高剂量的(+)-喷他佐辛抑制了低剂量(+)-喷他佐辛的作用,但不影响低剂量的其他σ激动剂诱导的增强作用。随后给予另一低剂量的σ1激动剂不会进一步增强低剂量σ1激动剂诱导的增强作用。总之,这些结果强烈表明中枢神经系统中存在两种以上的σ受体亚型。