Synaptic dysfunction in schizophrenia
- Dong Min Yin,
- Yong Jun Chen,
- Anupama Sathyamurthy,
- Wen Cheng Xiong,
- Lin Mei(corresponding author)
- ,
- ,
- Medical College of Georgia,
Abstract
Schizophrenia alters basic brain processes of perception, emotion, and judgment to cause hallucinations, delusions, thought disorder, and cognitive deficits. Unlike neurodegeneration diseases that have irreversible neuronal degeneration and death, schizophrenia lacks agreeable pathological hallmarks, which makes it one of the least understood psychiatric disorders. With identification of schizophrenia susceptibility genes, recent studies have begun to shed light on underlying pathological mechanisms. Schizophrenia is believed to result from problems during neural development that lead to improper function of synaptic transmission and plasticity, and in agreement, many of the susceptibility genes encode proteins critical for neural development. Some, however, are also expressed at high levels in adult brain. Here, we will review evidence for altered neurotransmission at glutamatergic, GABAergic, dopaminergic, and cholinergic synapses in schizophrenia and discuss roles of susceptibility genes in neural development as well as in synaptic plasticity and how their malfunction may contribute to pathogenic mechanisms of schizophrenia. We propose that mouse models with precise temporal and spatial control of mutation or overexpression would be useful to delineate schizophrenia pathogenic mechanisms.
Publication Information
Output type
Host publication Subtitle
Dynamics, Development and DiseaseOriginal language
English (US)Pages from-to (Number of pages)
Pages 493-516 (24 pages)Publication milestones
- Published - 2012
Publication status
Publication series
- Publication series name: Advances in Experimental Medicine and Biology
ISSN (Print): 0065-2598
Volume: 970
ISBN (Print)
9783709109311Publication IDs
- Scopus: 84863286733
- PubMed: 22351070
Host publication title
Synaptic PlasticityHost publication editors
- Michael Kreutz
- Carlo Sala
