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Linking oligodendrocyte and myelin dysfunction to neurocircuitry abnormalities in schizophrenia.


ABSTRACT: Multiple lines of evidence in schizophrenia, from brain imaging, studies in postmortem brains, and genetic association studies, have implicated oligodendrocyte and myelin dysfunction in this disease. Recent studies suggest that oligodendrocyte and myelin dysfunction leads to changes in synaptic formation and function, which could lead to cognitive dysfunction, a core symptom of schizophrenia. Furthermore, there is accumulating data linking oligodendrocyte and myelin dysfunction with dopamine and glutamate abnormalities, both of which are found in schizophrenia. These findings implicate oligodendrocyte and myelin dysfunction as a primary change in schizophrenia, not only as secondary consequences of the illness or treatment. Strategies targeting oligodendrocyte and myelin abnormalities could therefore provide therapeutic opportunities for patients suffering from schizophrenia.

SUBMITTER: Takahashi N 

PROVIDER: S-EPMC3622281 | biostudies-literature | 2011 Jan

REPOSITORIES: biostudies-literature

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Linking oligodendrocyte and myelin dysfunction to neurocircuitry abnormalities in schizophrenia.

Takahashi Nagahide N   Sakurai Takeshi T   Davis Kenneth L KL   Buxbaum Joseph D JD  

Progress in neurobiology 20101013 1


Multiple lines of evidence in schizophrenia, from brain imaging, studies in postmortem brains, and genetic association studies, have implicated oligodendrocyte and myelin dysfunction in this disease. Recent studies suggest that oligodendrocyte and myelin dysfunction leads to changes in synaptic formation and function, which could lead to cognitive dysfunction, a core symptom of schizophrenia. Furthermore, there is accumulating data linking oligodendrocyte and myelin dysfunction with dopamine and  ...[more]

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