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Proteomics of the corpus callosum unravel pivotal players in the dysfunction of cell signaling, structure, and myelination in schizophrenia brains

Proteomics of the corpus callosum unravel pivotal players in the dysfunction of cell signaling, structure, and myelination in schizophrenia brains

Veronica M. Saia-Cereda, Juliana S. Cassoli, Andrea Schmitt, Peter Falkai, Juliana M. Nascimento, Daniel Martins-de-Souza

ARTIGO

Inglês

Schizophrenia is an incurable and debilitating mental disorder that may affect up to 1 % of the world population. Morphological, electrophysiological, and neurophysiological studies suggest that the corpus callosum (CC), which is the largest portion of white matter in the human brain and responsible... Ver mais

CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQ

460289/2014-4

FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP

2013/08711-3; 2014/10068-4; 2014/21035-0; 2014/14881-1

Fechado

Proteomics of the corpus callosum unravel pivotal players in the dysfunction of cell signaling, structure, and myelination in schizophrenia brains

Veronica M. Saia-Cereda, Juliana S. Cassoli, Andrea Schmitt, Peter Falkai, Juliana M. Nascimento, Daniel Martins-de-Souza

										

Proteomics of the corpus callosum unravel pivotal players in the dysfunction of cell signaling, structure, and myelination in schizophrenia brains

Veronica M. Saia-Cereda, Juliana S. Cassoli, Andrea Schmitt, Peter Falkai, Juliana M. Nascimento, Daniel Martins-de-Souza

    Fontes

    European archives of psychiatry and clinical neuroscience: official organ of the German society for biological psychiatry (Fonte avulsa)