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Updated: Aug 15, 2026

Using Retinal Imaging to Study Dementia
Published on: November 6, 2017
Three independent lines of evidence suggest retinoids as causal to schizophrenia
1Statistical Sciences and Epidemiology Division, Nathan S. Kline Institute for Psychiatric Research, Orangeburg, NY 10962, USA.
Abstract:
Retinoid dysregulation may be an important factor in the etiology of schizophrenia. This hypothesis is supported by three independent lines of evidence that triangulate on retinoid involvement in schizophrenia: (i) congenital anomalies similar to those caused by retinoid dysfunction are found in schizophrenics and their relatives; (ii) those loci that have been suggestively linked to schizophrenia are also the loci of the genes of the retinoid cascade (convergent loci); and (iii) the transcriptional activation of the dopamine D2 receptor and numerous schizophrenia candidate genes is regulated by retinoic acid. These findings suggest a close causal relationship between retinoids and the underlying pathophysiological defects in schizophrenia. This leads to specific strategies for linkage analyses in schizophrenia. In view of the heterodimeric nature of the retinoid nuclear receptor transcription factors, e.g., retinoid X receptor beta at chromosome 6p21.3 and retinoic acid receptor beta at 3p24.3, two-locus linkage models incorporating genes of the retinoid cascade and their heterodimeric partners, e.g., peroxisome proliferator-activated receptor alpha at chromosome 22q12-q13 or nuclear-related receptor 1 at chromosome 2q22-q23, are proposed. New treatment modalities using retinoid analogs to alter the downstream expression of the dopamine receptors and other genes that are targets of retinoid regulation, and that are thought to be involved in schizophrenia, are suggested.
Insights
Retinoid dysregulation is implicated in schizophrenia etiology. Evidence links retinoid pathways to schizophrenia genetics and gene regulation, suggesting new treatment strategies involving retinoid analogs.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Retinoid dysregulation is a potential factor in schizophrenia development.
- Congenital anomalies observed in schizophrenics resemble retinoid dysfunction effects.
- Genetic loci linked to schizophrenia overlap with genes in the retinoid cascade.
Purpose of the Study:
- To explore the role of retinoid dysregulation in schizophrenia etiology.
- To propose genetic linkage strategies for schizophrenia research.
- To suggest novel therapeutic approaches for schizophrenia.
Main Methods:
- Review of evidence linking retinoid pathways to schizophrenia.
- Analysis of gene locations for retinoid cascade and schizophrenia candidate genes.
- Proposal of two-locus linkage models for genetic analysis.
Main Results:
- Three lines of evidence support retinoid involvement in schizophrenia.
- Retinoic acid regulates transcriptional activation of dopamine D2 receptor and other schizophrenia-related genes.
- Convergent loci identified between retinoid genes and schizophrenia linkage regions.
Conclusions:
- A strong causal relationship exists between retinoids and schizophrenia pathophysiology.
- Retinoid nuclear receptor heterodimers (e.g., RXRβ, RARβ) are key targets.
- Retinoid analogs offer potential new treatments for schizophrenia by modulating gene expression.

