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.

Abstract

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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