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Probing the Modulation of Acute Ethanol Intoxication by Pharmacological Manipulation of the NMDAR Glycine Co-Agonist Site

机译:通过药理学NMDAR甘氨酸助激动剂位点探讨对急性乙醇中毒的调节

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Background: Stimulating the glycineB binding site on the N-methyl-d-aspartate ionotropic glutamate receptor (NMDAR) has been proposed as a novel mechanism for modulating behavioral effects of ethanol (EtOH) that are mediated via the NMDAR, including acute intoxication. Here, we pharmacologically interrogated this hypothesis in mice. Methods: Effects of systemic injection of the glycineB agonist, d-serine, the GlyT-1 glycine transporter inhibitor, ALX-5407, and the glycineB antagonist, L-701,324, were tested for the effects on EtOH-induced ataxia, hypothermia, and loss of righting reflex (LORR) duration in C57BL/6J (B6) and 129S1/SvImJ (S1) inbred mice. Effects of the glycineB partial agonist, d-cycloserine (DCS), the GlyT-1 inhibitor, N-[3-(4′-fluorophenyl)-3-(4′-phenylphenoxy)propyl]sarcosine (NFPS), and the glycineB antagonist, 5,7-dichlorokynurenic (DCKA), on EtOH-induced LORR duration were also tested. Interaction effects on EtOH-induced LORR duration were examined via combined treatment with d-serine and ALX-5407, d-serine and MK-801, d-serine and L-701,324, as well as L-701,324 and ALX-5407, in B6 mice, and d-serine in GluN2A and PSD-95 knockout mice. The effect of dietary depletion of magnesium (Mg), an element that interacts with the glycineB site, was also tested. Results: Neither d-serine, DCS, ALX-5407, nor NFPS significantly affected EtOH intoxication on any of the measures or strains studied. L-701,324, but not DCKA, dose-dependently potentiated the ataxia-inducing effects of EtOH and increased EtOH-induced (but not pentobarbital-induced) LORR duration. d-serine did not have interactive effects on EtOH-induced LORR duration when combined with ALX-5407. The EtOH-potentiating effects of L-701,324, but not MK-801, on LORR duration were prevented by d-serine, but not ALX-5407. Mg depletion potentiated LORR duration in B6 mice and was lethal in a large proportion of S1 mice. Conclusions: GlycineB site activation failed to produce the hypothesized reduction in EtOH intoxication across a range of measures and genetic strains, but blockade of the glycineB site potentiated EtOH intoxication. These data suggest endogenous activity at the glycineB opposes EtOH intoxication, but it may be difficult to pharmacologically augment this action, at least in nondependent subjects, perhaps because of physiological saturation of the glycineB site.
机译:背景:刺激N-甲基-d-天冬氨酸离子型谷氨酸受体(NMDAR)上的甘氨酸B结合位点已被提议作为调节乙醇(EtOH)行为的新机制,该行为通过NMDAR介导,包括急性中毒。在这里,我们用药理学的方法对小鼠的这一假设进行了研究。方法:测试了全身注射甘氨酸B激动剂,d-丝氨酸,GlyT-1甘氨酸转运蛋白抑制剂ALX-5407和甘氨酸B拮抗剂L-701,324对EtOH引起的共济失调,体温过低和C57BL / 6J(B6)和129S1 / SvImJ(S1)近交小鼠的扶正反射(LORR)持续时间丧失。甘氨酸B部分激动剂,d-环丝氨酸(DCS),GlyT-1抑制剂,N- [3-(4'-氟苯基)-3-(4'-苯基苯氧基)丙基]肌氨酸(NFPS)和甘氨酸B的作用还测试了EtOH诱导的LORR持续时间的拮抗药5,7-二氯尿嘧啶(DCKA)。通过与d-丝氨酸和ALX-5407,d-丝氨酸和MK-801,d-丝氨酸和L-701,324以及L-701,324和ALX-5407联合处理,检查了对EtOH诱导的LORR持续时间的相互作用影响。 B6小鼠,以及GluN2A和PSD-95基因敲除小鼠中的d-丝氨酸。还测试了饮食中镁(Mg)(一种与甘氨酸B位点相互作用的元素)的耗竭作用。结果:在研究的任何方法或菌株中,d-丝氨酸,DCS,ALX-5407和NFPS均未显着影响EtOH中毒。 L-701,324(而非DCKA)剂量依赖性地增强了EtOH的共济失调诱导作用,并增加了EtOH诱导的(而非戊巴比妥诱导的)LORR持续时间。当与ALX-5407结合使用时,d-丝氨酸对EtOH诱导的LORR持续时间没有交互作用。 d-丝氨酸可防止L-701,324的EtOH增强作用,但MK-801不会抑制LORR持续时间,ALX-5407则不能。镁耗竭增强了B6小鼠的LORR持续时间,并且在大部分S1小鼠中具有致命性。结论:甘氨酸B位点激活未能在一系列措施和遗传菌株中产生EtOH中毒的假设减少,但阻断甘氨酸B位点增强了EtOH中毒。这些数据表明,甘氨酸B的内源性活性可抵抗EtOH中毒,但可能由于甘氨酸B位点的生理饱和,至少在非依赖性受试者中可能难以药理上增强这种作用。

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