Brain angiotensin enhances dopaminergic cell death via microglial activation and NADPH-derived ROS
Rodriguez-Pallares, J, Rey, P, Parga, J.A, Muñoz, A, Guerra, M.J, Labandeira-Garcia, J.L
Published in Neurobiology of disease (01.07.2008)
Published in Neurobiology of disease (01.07.2008)
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Angiotensin type-1-receptor antagonists reduce 6-hydroxydopamine toxicity for dopaminergic neurons
Rey, P, Lopez-Real, A, Sanchez-Iglesias, S, Muñoz, A, Soto-Otero, R, Labandeira-Garcia, J.L
Published in Neurobiology of aging (01.04.2007)
Published in Neurobiology of aging (01.04.2007)
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Angiotensin-converting enzyme inhibition reduces oxidative stress and protects dopaminergic neurons in a 6-hydroxydopamine rat model of Parkinsonism
Lopez-Real, A., Rey, P., Soto-Otero, R., Mendez-Alvarez, E., Labandeira-Garcia, J.L.
Published in Journal of neuroscience research (15.09.2005)
Published in Journal of neuroscience research (15.09.2005)
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Serotonin decreases generation of dopaminergic neurons from mesencephalic precursors via serotonin type 7 and type 4 receptors
Parga, J., Rodriguez‐Pallares, J., Muñoz, A., Guerra, M. J., Labandeira‐Garcia, J.L.
Published in Developmental neurobiology (Hoboken, N.J.) (01.01.2007)
Published in Developmental neurobiology (Hoboken, N.J.) (01.01.2007)
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Dopamine D2 and angiotensin II type 1 receptors form functional heteromers in rat striatum
Martínez-Pinilla, E., Rodríguez-Pérez, A.I., Navarro, G., Aguinaga, D., Moreno, E., Lanciego, J.L., Labandeira-García, J.L., Franco, R.
Published in Biochemical pharmacology (15.07.2015)
Published in Biochemical pharmacology (15.07.2015)
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Expanded mesencephalic precursors develop into grafts of densely packed dopaminergic neurons that reinnervate the surrounding striatum and induce functional responses in the striatal neurons
Rodriguez-Pallares, J., Parga, J.A., Rey, P., Guerra, M.J., Labandeira-Garcia, J.L.
Published in Synapse (New York, N.Y.) (01.10.2005)
Published in Synapse (New York, N.Y.) (01.10.2005)
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The overall rod performance test in the MPTP-treated-mouse model of Parkinsonism
Rozas, G, López-Martı́n, E, Guerra, M.J, Labandeira-Garcı́a, J.L
Published in Journal of neuroscience methods (01.09.1998)
Published in Journal of neuroscience methods (01.09.1998)
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Location of neurons projecting to the retina in mammals
Labandeira-Garcia, J L, Guerra-Seijas, M J, Gonzalez, F, Perez, R, Acuña, C
Published in Neuroscience research (01.08.1990)
Published in Neuroscience research (01.08.1990)
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Effect of inhibitors of NADPH oxidase complex and mitochondrial ATP‐sensitive potassium channels on generation of dopaminergic neurons from neurospheres of mesencephalic precursors
Parga, J.A., Rodríguez‐Pallares, J., Joglar, B., Diaz‐Ruiz, C., Guerra, M.J., Labandeira‐Garcia, J.L.
Published in Developmental dynamics (01.12.2010)
Published in Developmental dynamics (01.12.2010)
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Effects of GABA and GABA receptor inhibition on differentiation of mesencephalic precursors into dopaminergic neurons in vitro
Parga, J.A., Rodriguez‐Pallares, J., Guerra, M.J., Labandeira‐Garcia, J.L.
Published in Developmental neurobiology (Hoboken, N.J.) (01.10.2007)
Published in Developmental neurobiology (Hoboken, N.J.) (01.10.2007)
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Time course of striatal changes induced by 6-hydroxydopamine lesion of the nigrostriatal pathway, as studied by combined evaluation of rotational behaviour and striatal Fos expression
Labandeira-Garcia, J L, Rozas, G, Lopez-Martin, E, Liste, I, Guerra, M J
Published in Experimental brain research (01.02.1996)
Published in Experimental brain research (01.02.1996)
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Cortical stimulation induces Fos expression in striatal neurons via NMDA glutamate and dopamine receptors
Liste, I., Rozas, G., Guerra, M.J., Labandeira-Garcia, J.L.
Published in Brain research (27.11.1995)
Published in Brain research (27.11.1995)
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The corticostriatal system mediates the paradoxical contraversive rotation but not the striatal hyperexpression of Fos induced by amphetamine early after 6-hydroxydopamine lesion of the nigrostriatal pathway
LOPEZ-MARTIN, E, ROZAS, G, RODRIGUEZ, J, GUERRA, M. J, LABANDEIRA-GARCIA, J. L
Published in Experimental brain research (01.05.1998)
Published in Experimental brain research (01.05.1998)
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