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ab26113 has been referenced in 36 publications.

  • Woodhouse A  et al. Repeat propofol anesthesia does not exacerbate plaque deposition or synapse loss in APP/PS1 Alzheimer's disease mice. BMC Anesthesiol 18:47 (2018). PubMed: 29699479
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  • Andersen JV  et al. Impaired Hippocampal Glutamate and Glutamine Metabolism in the db/db Mouse Model of Type 2 Diabetes Mellitus. Neural Plast 2017:2107084 (2017). WB ; Mouse . PubMed: 28695014
  • Homman-Ludiye J  et al. Ephrin-A2 regulates excitatory neuron differentiation and interneuron migration in the developing neocortex. Sci Rep 7:11813 (2017). PubMed: 28924206
  • Ding Y  et al. Changes in GABAergic markers accompany degradation of neuronal function in the primary visual cortex of senescent rats. Sci Rep 7:14897 (2017). PubMed: 29097694
  • Caporali P  et al. Developmental delay in motor skill acquisition in Niemann-Pick C1 mice reveals abnormal cerebellar morphogenesis. Acta Neuropathol Commun 4:94 (2016). PubMed: 27586038
  • Chen L  et al. Involvement of upregulation of miR-210 in a rat epilepsy model. Neuropsychiatr Dis Treat 12:1731-7 (2016). WB . PubMed: 27471387
  • Audrain M  et al. Alzheimer's disease-like APP processing in wild-type mice identifies synaptic defects as initial steps of disease progression. Mol Neurodegener 11:5 (2016). PubMed: 26759118
  • Choi M  et al. Hippocampus-based contextual memory alters the morphological characteristics of astrocytes in the dentate gyrus. Mol Brain 9:72 (2016). Mouse . PubMed: 27460927
  • Umorin M  et al. Genes in the GABA Pathway Increase in the Lateral Thalamus of Sprague-Dawley Rats During the Proestrus/Estrus Phase. J Cell Physiol 231:1057-64 (2016). PubMed: 26388520
  • Hirano K & Namihira M LSD1 Mediates Neuronal Differentiation of Human Fetal Neural Stem Cells by Controlling the Expression of a Novel Target Gene, HEYL. Stem Cells 34:1872-82 (2016). PubMed: 27018646
  • Zhu B  et al. Anti-platelet therapy holds promises in treating adenomyosis: experimental evidence. Reprod Biol Endocrinol 14:66 (2016). PubMed: 27724926
  • Huang F  et al. Deletion of mouse FXR gene disturbs multiple neurotransmitter systems and alters neurobehavior. Front Behav Neurosci 9:70 (2015). WB ; Mouse . PubMed: 25870546
  • Farooqi MS  et al. Therapeutic plasma exchange and immunosuppressive therapy in a patient with anti-GAD antibody-related epilepsy: quantification of the antibody response. J Clin Apher 30:8-14 (2015). PubMed: 24961613
  • Zhu B  et al. Resveratrol Reduces Myometrial Infiltration, Uterine Hyperactivity, and Stress Levels and Alleviates Generalized Hyperalgesia in Mice With Induced Adenomyosis. Reprod Sci N/A:N/A (2015). PubMed: 25701840
  • Morell M  et al. Cortistatin attenuates inflammatory pain via spinal and peripheral actions. Neurobiol Dis 63:141-54 (2014). PubMed: 24333694
  • Corthell JT  et al. Melatonin in the mammalian olfactory bulb. Neuroscience 261:74-84 (2014). PubMed: 24365461
  • McQuade LR  et al. Proteomics of Huntington's disease-affected human embryonic stem cells reveals an evolving pathology involving mitochondrial dysfunction and metabolic disturbances. J Proteome Res 13:5648-59 (2014). PubMed: 25316320
  • Benitez SU  et al. Synaptic plasticity and sensory-motor improvement following fibrin sealant dorsal root reimplantation and mononuclear cell therapy. Front Neuroanat 8:96 (2014). IHC-FoFr ; Rat . PubMed: 25249946
  • Beitnere U  et al. Carnitine congener mildronate protects against stress- and haloperidol-induced impairment in memory and brain protein expression in rats. Eur J Pharmacol 745:76-83 (2014). PubMed: 25446926
  • Chen Y  et al. Possible Loss of GABAergic Inhibition in Mice With Induced Adenomyosis and Treatment With Epigallocatechin-3-Gallate Attenuates the Loss With Improved Hyperalgesia. Reprod Sci N/A:N/A (2014). PubMed: 24492488
  • Al-Jaberi N  et al. The Early Fetal Development of Human Neocortical GABAergic Interneurons. Cereb Cortex N/A:N/A (2013). IHC ; Human . PubMed: 24047602
  • Spejo AB  et al. Neuroprotective effects of mesenchymal stem cells on spinal motoneurons following ventral root axotomy: synapse stability and axonal regeneration. Neuroscience 250:715-32 (2013). PubMed: 23896572
  • Sukhdeo K  et al. The Lgr5 transgene is expressed specifically in glycinergic amacrine cells in the mouse retina. Exp Eye Res N/A:N/A (2013). IHC-FoFr ; Mouse . PubMed: 24246263
  • Miao D  et al. GAD65 autoantibodies detected by electrochemiluminescence assay identify high risk for type 1 diabetes. Diabetes 62:4174-8 (2013). Human . PubMed: 23974918
  • Hübler D  et al. Differential Spatial Expression and Subcellular Localization of CtBP Family Members in Rodent Brain. PLoS One 7:e39710 (2012). ICC/IF ; Rat . PubMed: 22745816
  • Winpenny E  et al. Sequential generation of olfactory bulb glutamatergic neurons by Neurog2-expressing precursor cells. Neural Dev 6:12 (2011). IHC-Fr ; Mouse . PubMed: 21466690
  • Elizalde N  et al. Sustained stress-induced changes in mice as a model for chronic depression. Psychopharmacology (Berl) 210:393-406 (2010). WB ; Mouse . PubMed: 20401750
  • Kukley M  et al. Glial cells are born with synapses. FASEB J 22:2957-69 (2008). IHC-P ; Mouse . PubMed: 18467596
  • Chan O  et al. Increased GABAergic tone in the ventromedial hypothalamus contributes to suppression of counterregulatory responses after antecedent hypoglycemia. Diabetes 57:1363-70 (2008). WB ; Rat . PubMed: 18375441
  • Rui M  et al. Species and epitope specificity of two 65 kDa glutamate decarboxylase time-resolved fluorometric immunoassays. J Immunol Methods 319:133-43 (2007). PubMed: 17210161
  • Davenport C  et al. Heterogeneity in the occurrence of a subset of autoantibodies to glutamic acid decarboxylase in autoimmune polyendocrine patients with islet cell antibodies. Clin Exp Immunol 111:497-505 (1998). PubMed: 9528889
  • Martin DL & Barke KE Are GAD65 and GAD67 associated with specific pools of GABA in brain? Perspect Dev Neurobiol 5:119-29 (1998). PubMed: 9777630
  • Martin DL  et al. Regulatory properties of brain glutamate decarboxylase (GAD): the apoenzyme of GAD is present principally as the smaller of two molecular forms of GAD in brain. J Neurosci 11:2725-31 (1991). PubMed: 1880546
  • Kaufman DL  et al. Two forms of the gamma-aminobutyric acid synthetic enzyme glutamate decarboxylase have distinct intraneuronal distributions and cofactor interactions. J Neurochem 56:720-3 (1991). PubMed: 1988566


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