Molecular mechanisms underlying neuropsychiatric and neurodegenerative diseases are insufficiently elucidated. A detailed understanding of these mechanisms may help to further improve medical intervention. Recently, intellectual abilities, creativity, and amnesia have been associated with neuroplastin, a cell recognition glycoprotein of the immunoglobulin superfamily that participates in synapse formation and function and calcium signaling. Data from animal models suggest a role for neuroplastin in pathways affected in neuropsychiatric and neurodegenerative diseases. Neuroplastin loss or disruption of molecular pathways related to neuronal processes has been linked to various neurological diseases, including dementia, schizophrenia, and Alz...
Neuroplastini imaju ulogu u rastu neurita, modulaciji dugoročne sinaptičke plastičnosti, ekscitaciji...
Cellular mechanisms involved in neurodegeneration and neuroprotection are continuing to be explored,...
Recent studies on the molecular and cellular basis of learning and memory have brought us closer tha...
Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular events u...
Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular events u...
Abstract Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular...
ABSTRACTBackgroundNeuroplastin cell recognition molecules have been implicated in synaptic plasticit...
The cell adhesion molecule neuroplastin (Np) is a novel candidate to influence human intelligence. N...
Neuroplastin cell recognition molecules have been implicated in synaptic plasticity. Polymorphisms i...
ABSTRACTBackgroundNeuroplastin cell recognition molecules have been implicated in synaptic plasticit...
The cell adhesion molecule neuroplastin (Np) is a novel candidate to influence human intelligence. N...
© 2014 International Society for Neurochemistry. The Neuroplastins Np65 and Np55 are neuronal and sy...
© 2014 International Society for Neurochemistry. The Neuroplastins Np65 and Np55 are neuronal and sy...
Synaptopathies are brain disorders characterized by dysfunctional synapses, which are specialized ju...
Neuroplastini imaju ulogu u rastu neurita, modulaciji dugoročne sinaptičke plastičnosti, ekscitaciji...
Neuroplastini imaju ulogu u rastu neurita, modulaciji dugoročne sinaptičke plastičnosti, ekscitaciji...
Cellular mechanisms involved in neurodegeneration and neuroprotection are continuing to be explored,...
Recent studies on the molecular and cellular basis of learning and memory have brought us closer tha...
Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular events u...
Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular events u...
Abstract Synaptic glycoprotein neuroplastin is involved in synaptic plasticity and complex molecular...
ABSTRACTBackgroundNeuroplastin cell recognition molecules have been implicated in synaptic plasticit...
The cell adhesion molecule neuroplastin (Np) is a novel candidate to influence human intelligence. N...
Neuroplastin cell recognition molecules have been implicated in synaptic plasticity. Polymorphisms i...
ABSTRACTBackgroundNeuroplastin cell recognition molecules have been implicated in synaptic plasticit...
The cell adhesion molecule neuroplastin (Np) is a novel candidate to influence human intelligence. N...
© 2014 International Society for Neurochemistry. The Neuroplastins Np65 and Np55 are neuronal and sy...
© 2014 International Society for Neurochemistry. The Neuroplastins Np65 and Np55 are neuronal and sy...
Synaptopathies are brain disorders characterized by dysfunctional synapses, which are specialized ju...
Neuroplastini imaju ulogu u rastu neurita, modulaciji dugoročne sinaptičke plastičnosti, ekscitaciji...
Neuroplastini imaju ulogu u rastu neurita, modulaciji dugoročne sinaptičke plastičnosti, ekscitaciji...
Cellular mechanisms involved in neurodegeneration and neuroprotection are continuing to be explored,...
Recent studies on the molecular and cellular basis of learning and memory have brought us closer tha...