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1
Kynurenic acid leads, dopamine follows: a new case of volume transmission in the brain?
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Kynurenic acid leads, dopamine follows: a new case of volume transmission in the brain?

Wu, H-Q ; Rassoulpour, A ; Schwarcz, R

Journal of Neural Transmission, 2007-01, Vol.114 (1), p.33-41 [Periódico revisado por pares]

Austria: Springer Nature B.V

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2
Early developmental elevations of brain kynurenic acid impair cognitive flexibility in adults: Reversal with galantamine
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Early developmental elevations of brain kynurenic acid impair cognitive flexibility in adults: Reversal with galantamine

Alexander, K.S ; Pocivavsek, A ; Wu, H.-Q ; Pershing, M.L ; Schwarcz, R ; Bruno, J.P

Neuroscience, 2013-05, Vol.238, p.19-28 [Periódico revisado por pares]

United States: Elsevier Ltd

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3
Specific inhibition of kynurenate synthesis enhances extracellular dopamine levels in the rodent striatum
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Specific inhibition of kynurenate synthesis enhances extracellular dopamine levels in the rodent striatum

Amori, L ; Wu, H.-Q ; Marinozzi, M ; Pellicciari, R ; Guidetti, P ; Schwarcz, R

Neuroscience, 2009-03, Vol.159 (1), p.196-203 [Periódico revisado por pares]

Amsterdam: Elsevier Ltd

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4
Cortical kynurenic acid bi-directionally modulates prefrontal glutamate levels as assessed by microdialysis and rapid electrochemistry
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Cortical kynurenic acid bi-directionally modulates prefrontal glutamate levels as assessed by microdialysis and rapid electrochemistry

Konradsson-Geuken, Å ; Wu, H.Q ; Gash, C.R ; Alexander, K.S ; Campbell, A ; Sozeri, Y ; Pellicciari, R ; Schwarcz, R ; Bruno, J.P

Neuroscience, 2010-09, Vol.169 (4), p.1848-1859 [Periódico revisado por pares]

Amsterdam: Elsevier Ltd

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5
Neostriatal and cortical quinolinate levels are increased in early grade Huntington's disease
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Neostriatal and cortical quinolinate levels are increased in early grade Huntington's disease

Guidetti, Paolo ; Luthi-Carter, Ruth E. ; Augood, Sarah J. ; Schwarcz, Robert

Neurobiology of disease, 2004-12, Vol.17 (3), p.455-461 [Periódico revisado por pares]

United States: Elsevier Inc

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6
Dopamine receptor activation reveals a novel, kynurenate-sensitive component of striatal N -methyl- d -aspartate neurotoxicity
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Dopamine receptor activation reveals a novel, kynurenate-sensitive component of striatal N -methyl- d -aspartate neurotoxicity

Poeggeler, B ; Rassoulpour, A ; Wu, H.-Q ; Guidetti, P ; Roberts, R.C ; Schwarcz, R

Neuroscience, 2007-08, Vol.148 (1), p.188-197 [Periódico revisado por pares]

Oxford: Elsevier Ltd

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7
Prenatal Dynamics of Kynurenine Pathway Metabolism in Mice: Focus on Kynurenic Acid
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Prenatal Dynamics of Kynurenine Pathway Metabolism in Mice: Focus on Kynurenic Acid

Goeden, Nick ; Notarangelo, Francesca M. ; Pocivavsek, Ana ; Beggiato, Sarah ; Bonnin, Alexandre ; Schwarcz, Robert

Developmental neuroscience, 2017-01, Vol.39 (6), p.519-528 [Periódico revisado por pares]

Basel, Switzerland

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8
Endogenous kynurenate controls the vulnerability of striatal neurons to quinolinate: Implications for Huntington's disease
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Endogenous kynurenate controls the vulnerability of striatal neurons to quinolinate: Implications for Huntington's disease

Sapko, Michael T. ; Guidetti, Paolo ; Yu, Ping ; Tagle, Danilo A. ; Pellicciari, Roberto ; Schwarcz, Robert

Experimental neurology, 2006, Vol.197 (1), p.31-40 [Periódico revisado por pares]

Amsterdam: Elsevier Inc

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9
Memory impairment in temporal lobe epilepsy: the role of entorhinal lesions
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Memory impairment in temporal lobe epilepsy: the role of entorhinal lesions

Schwarcz, Robert ; Witter, Menno P.

Epilepsy research, 2002-06, Vol.50 (1), p.161-177 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

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10
Early Degenerative Changes in Transgenic Mice Expressing Mutant Huntingtin Involve Dendritic Abnormalities but No Impairment of Mitochondrial Energy Production
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Early Degenerative Changes in Transgenic Mice Expressing Mutant Huntingtin Involve Dendritic Abnormalities but No Impairment of Mitochondrial Energy Production

Guidetti, Paolo ; Charles, Vinod ; Chen, Er-Yun ; Reddy, P.Hemachandra ; Kordower, Jeffrey H. ; Whetsell, William O. ; Schwarcz, Robert ; Tagle, Danilo A.

Experimental neurology, 2001-06, Vol.169 (2), p.340-350 [Periódico revisado por pares]

Amsterdam: Elsevier Inc

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