Sircar R, Li C S
Department of Psychiatry, Albert Einstein College of Medicine/Montefiore Medical Center, Bronx, NY 10461.
Neurotoxicol Teratol. 1994 Jul-Aug;16(4):369-75. doi: 10.1016/0892-0362(94)90025-6.
Phencyclidine (PCP) acts on a variety of neurotransmitter systems--cholinergic, catechoaminergic, indoleaminergic, and peptidergic--but the dose at which it produces its psychotomimetic effects is lower than the concentration at which it affects these systems. At low doses, PCP interacts primarily with a binding site located within the ionophore associated with the NMDA receptor complex--binding to this site has been used as a biochemical marker for NMDA channel activity. PCP/NMDA receptor-channel complex has been shown to play an important role in brain development but little is known of the neurochemical effects following postnatal administration of NMDA antagonists in rats. In the present study, rats were treated with PCP from Day 5 until Day 15 after birth and binding to the PCP receptor was measured on postnatal Day 21 using [3H]MK-801; MK-801 is a more potent and specific ligand at the PCP receptor than PCP itself. Postnatal PCP administration produced specific alterations in PCP receptor binding in 21-day-old rat forebrain. There was a reduction in the high affinity component of [3H]MK-801 binding under baseline binding conditions. In the presence of both L-glutamate and glycine, [3H]MK-801 binding in PCP-treated rats increased significantly compared to baseline but did not differ from saline-treated controls. These findings suggest that chronic PCP administration in developing rats alter NMDA channel functioning which could have long-term neurobehavioral consequences.
苯环己哌啶(PCP)作用于多种神经递质系统——胆碱能、儿茶酚胺能、吲哚胺能和肽能系统——但其产生拟精神病效应的剂量低于影响这些系统的浓度。在低剂量时,PCP主要与位于与NMDA受体复合物相关的离子载体内的一个结合位点相互作用——与该位点的结合已被用作NMDA通道活性的生化标记。PCP/NMDA受体通道复合物已被证明在大脑发育中起重要作用,但关于出生后给大鼠施用NMDA拮抗剂后的神经化学效应知之甚少。在本研究中,从出生后第5天到第15天用PCP处理大鼠,并在出生后第21天使用[3H]MK-801测量与PCP受体的结合;MK-801在PCP受体上是比PCP本身更有效和特异的配体。出生后给予PCP导致21日龄大鼠前脑PCP受体结合发生特异性改变。在基线结合条件下,[3H]MK-801结合的高亲和力成分降低。在同时存在L-谷氨酸和甘氨酸的情况下,与基线相比,PCP处理大鼠的[3H]MK-801结合显著增加,但与生理盐水处理的对照组无差异。这些发现表明,在发育中的大鼠中长期给予PCP会改变NMDA通道功能,这可能会产生长期的神经行为后果。