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Published on: November 21, 2013
Neuroprogression in schizophrenia: Pathways underpinning clinical staging and therapeutic corollaries
Justin Davis1, Steven Moylan2, Brian H Harvey3
1IMPACT Strategic Research Centre, Deakin University, School of Medicine, Barwon Health, Geelong, Australia justinbdavis19@gmail.com.
Objective:
Whilst dopaminergic dysfunction remains a necessary component involved in the pathogenesis of schizophrenia, our current pharmacological armoury of dopamine antagonists does little to control the negative symptoms of schizophrenia. This suggests other pathological processes must be implicated. This paper aims to elaborate on such theories.
Methods:
Data for this review were sourced from the electronic database PUBMED, and was not limited by language or date of publication.
Results:
It has been suggested that multiple 'hits' may be required to unveil the clinical syndrome in susceptible individuals. Such hits potentially first occur in utero, leading to neuronal disruption, epigenetic changes and the establishment of an abnormal inflammatory response. The development of schizophrenia may therefore potentially be viewed as a neuroprogressive response to these early stressors, driven on by changes in tryptophan catabolite (TRYCAT) metabolism, reactive oxygen species handling and N-methyl d-aspartate (NMDA) circuitry. Given the potential for such progression over time, it is prudent to explore the new treatment strategies which may be implemented before such changes become established.
Conclusions:
Outside of the dopaminergic model, the potential pathogenesis of schizophrenia has yet to be fully elucidated, but common themes include neuropil shrinkage, the development of abnormal neuronal circuitry, and a chronic inflammatory state which further disrupts neuronal function. Whilst some early non-dopaminergic treatments show promise, none have yet to be fully studied in appropriately structured randomized controlled trials and they remain little more than potential attractive targets.
Insights
Schizophrenia pathogenesis involves more than dopamine dysfunction, with early life stressors potentially triggering neuroprogression. Exploring non-dopaminergic pathways offers new therapeutic avenues for negative symptoms.
Area of Science:
- Neuroscience
- Psychiatry
- Pathology
Background:
- Dopaminergic dysfunction is implicated in schizophrenia, but dopamine antagonists fail to address negative symptoms.
- This highlights the need to explore alternative pathological processes in schizophrenia development.
Purpose of the Study:
- To elaborate on theories of schizophrenia pathogenesis beyond the dopaminergic model.
- To discuss potential neuroprogressive mechanisms and novel treatment strategies.
Main Methods:
- Literature review of studies sourced from the electronic database PubMed.
- No limitations on language or publication date were imposed.
Main Results:
- Schizophrenia may result from multiple early-life 'hits' (in utero stressors) causing neuronal disruption and inflammation.
- Neuroprogression is potentially driven by altered tryptophan catabolite (TRYCAT) metabolism, reactive oxygen species, and N-methyl d-aspartate (NMDA) circuitry.
Conclusions:
- Beyond dopamine, schizophrenia pathogenesis involves neuropil shrinkage, abnormal neuronal circuitry, and chronic inflammation.
- While some non-dopaminergic treatments show promise, further randomized controlled trials are needed to validate their efficacy.
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