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三氟拉嗪的使用在大鼠脑膜中分离出一个[(3)H]艾芬地尔结合位点,其药理学特性与含NR2B亚基的N-甲基-D-天冬氨酸受体上的电压非依赖性艾芬地尔位点相同。

Use of trifluoroperazine isolates a [(3)H]Ifenprodil binding site in rat brain membranes with the pharmacology of the voltage-independent ifenprodil site on N-methyl-D-aspartate receptors containing NR2B subunits.

作者信息

Coughenour L L, Barr B M

机构信息

Department of Neuroscience Therapeutics, Pfizer Global Research and Development, Ann Arbor Laboratories, Ann Arbor, Michigan 48105, USA.

出版信息

J Pharmacol Exp Ther. 2001 Jan;296(1):150-9.

Abstract

The use of trifluoroperazine in a well washed rat brain membrane preparation revealed [(3)H]ifenprodil binding to a single high affinity state with the pharmacology of N-methyl-D-aspartate (NMDA) receptors containing NR2B subunits. Inhibition of [(3)H]ifenprodil binding in the presence of trifluoroperazine by 10 NR1a/NR2B selective agents was highly correlated with their inhibition at rat NR1a/NR2B receptors expressed in Xenopus ooctyes and [(3)H]TCP binding to rat brain NR2B subunit containing NMDA receptors but not with their inhibition of [(3)H]DTG binding. Allosteric interactions with polyamines, Mg(2+), Zn(2+), glutamate, glycine, and their antagonists were consistent with NMDA receptors with NR2B subtype pharmacology. The rank order of polyamine inhibition was spermine > spermidine > 1,5-(diethylamino)piperidine > arcaine > agmatine > putrescine. Both spermidine and MgCl(2) shifted the inhibition curve of ifenprodil to the right in a parallel manner, but Mg(2+) did not appear to be additive to spermidine. Glutamate increased and glycine decreased the binding. Conversely, CPP decreased the binding, and MDL 105,519 increased the binding in an agonist reversible manner. The increase with MDL 105,519 and glutamate appeared to be additive as did the decrease with glycine and CPP. Changes in the buffer pH between 6.5 and 8.0 did not affect the affinity of NR2B agents. Cirazoline but not clonidine inhibited the binding. MK-801 and agents from various other pharmacological classes did not significantly inhibit [(3)H]ifenprodil binding. [(3)H]Ifenprodil binding in the presence of trifluoroperazine appears to be selective for the voltage-independent ifenprodil site on NMDA receptors containing the NR2B subunit.

摘要

在充分洗涤的大鼠脑膜制剂中使用三氟拉嗪后发现,[³H]ifenprodil与一种单一的高亲和力状态结合,其药理学特性与含有NR2B亚基的N-甲基-D-天冬氨酸(NMDA)受体一致。在三氟拉嗪存在的情况下,10种NR1a/NR2B选择性药物对[³H]ifenprodil结合的抑制作用与其对非洲爪蟾卵母细胞中表达的大鼠NR1a/NR2B受体的抑制作用以及[³H]TCP与大鼠脑含NR2B亚基的NMDA受体的结合抑制作用高度相关,但与它们对[³H]DTG结合的抑制作用无关。与多胺、Mg²⁺、Zn²⁺、谷氨酸、甘氨酸及其拮抗剂的变构相互作用与具有NR2B亚型药理学特性的NMDA受体一致。多胺抑制作用的顺序为:精胺>亚精胺>1,5-(二乙氨基)哌啶>胍丁胺>胍基丁胺>腐胺。亚精胺和MgCl₂均以平行方式使ifenprodil的抑制曲线右移,但Mg²⁺与亚精胺之间似乎不存在相加作用。谷氨酸增加结合,甘氨酸减少结合。相反,CPP减少结合,而MDL 105,519以激动剂可逆的方式增加结合。MDL 105,519和谷氨酸引起的增加似乎具有相加性,甘氨酸和CPP引起的减少也具有相加性。缓冲液pH在6.5至8.0之间的变化不影响NR2B药物的亲和力。西拉唑啉而非可乐定抑制结合。MK-801和来自其他各种药理学类别的药物对[³H]ifenprodil结合无明显抑制作用。在三氟拉嗪存在的情况下,[³H]ifenprodil结合似乎对含有NR2B亚基的NMDA受体上与电压无关的ifenprodil位点具有选择性。

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