Relationship Between Glycine Transporter 1 Inhibition as Measured with Positron Emission Tomography and Changes in Cognitive Performances in Nonhuman Primates

被引:0
作者
S A Castner
N V Murthy
K Ridler
H Herdon
B M Roberts
D P Weinzimmer
Y Huang
M Q Zheng
E A Rabiner
R N Gunn
R E Carson
G V Williams
M Laruelle
机构
[1] Yale University School of Medicine,Department of Psychiatry
[2] Neurosciences Centre for Excellence in Drug Discovery,Department of Radiology
[3] GlaxoSmithKline,undefined
[4] Clinical Imaging Centre,undefined
[5] GlaxoSmithKline,undefined
[6] Hammersmith Hospital–Imperial College,undefined
[7] Yale University School of Medicine,undefined
[8] UCB Pharma,undefined
[9] Braine-l’Alleud,undefined
来源
Neuropsychopharmacology | 2014年 / 39卷
关键词
schizophrenia; glutamate; glycine transporter inhibitor;
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学科分类号
摘要
Several lines of evidence suggest that schizophrenia is associated with deficits in glutamatergic transmission at the N-methyl-d-aspartate (NMDA) receptors. Glycine is a NMDA receptor co-agonist, and extracellular levels of glycine are regulated in the forebrain by the glycine type-1 transporters (GlyT-1). GlyT-1 inhibitors elevate extracellular glycine and thus potentiate NMDA transmission. This mechanism represents a promising new avenue for the treatment of schizophrenia. Here, the recently introduced positron emission tomography radiotracer [11C]GSK931145 was used to quantify the relationship between occupancy of GlyT-1 by a GlyT-1 inhibitor, Org 25935, and its impact on spatial working memory performances in rhesus monkeys. The effect of Org 25935 on working memory was assessed both in control conditions and during a state of relative NMDA hypofunction induced by ketamine administration, at a dose selected for each animal to reduce task performance by about 50%. Under control conditions, Org 25935 had no effect on working memory at GlyT-1 occupancies lower than 75% and significantly impaired working memory at occupancies higher than 75%. Under ketamine conditions, Org 25935 reversed the deficit in working memory induced by ketamine and did so optimally in the 40–70% GlyT-1 occupancy range. The results confirm the efficacy of this mechanism to correct working memory deficits associated with NMDA hypofunction. These data also suggest the existence of an inverted-U dose–response curve in the potential therapeutic effect of this class of compounds.
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页码:2742 / 2749
页数:7
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