Related Experiment Video
Updated: Feb 2, 2026

A Modified Trier Social Stress Test for Vulnerable Mexican American Adolescents
Published on: July 10, 2017
Vulnerable combinations of functional dopaminergic polymorphisms to late-onset treatment resistant schizophrenia
Kengo Oishi1, Nobuhisa Kanahara2, Masayuki Takase1,3
1Department of Psychiatry, Chiba University Graduate School of Medicine, Chuou-ku, Chiba, Chiba, Japan.
Background:
A significant portion of patients with schizophrenia who respond to initial antipsychotic treatment acquire treatment resistance. One of the possible pathogeneses of treatment-resistant schizophrenia (TRS) is antipsychotic-induced dopamine supersensitivity psychosis (Ai-DSP). Patients with this disease progression might share some genetic vulnerabilities, and thus determining individuals with higher risks of developing Ai-DSP could contribute to preventing iatrogenic development of TRS. Therefore, we decided to examine whether combinations of functional single nucleotide polymorphisms (SNPs) known to affect dopaminergic functions are related to Ai-DSP development.
Methods:
In this case-control study, 357 Japanese participants diagnosed with schizophrenia or schizoaffective disorder were recruited and divided into two groups, those with and without Ai-DSP. As functional SNPs, we examined rs10770141 of the tyrosine hydroxylase gene, rs4680 of the catechol-O-methyltransferase gene, and rs1799732 and rs1800497 of the DRD2 genes, which are known to possess strong directional ties to dopamine synthesis, dopamine degradation and post-synaptic DRD2 prevalence, respectively.
Results:
Among the 357 Japanese patients with schizophrenia or schizoaffective disorder, 130 were classified as Ai-DSP(+) and the other 227 as Ai-DSP(-). Significantly higher proportions of Ai-DSP(+) patients were found to have the SNP combinations of rs10770141/rs4680 (57.9%, OR2.654, 95%CI1.036-6.787, P = 0.048) and rs10770141/rs4680/ rs1800497 (64.3%, OR4.230, 95%CI1.306-13.619, P = 0.029). However, no single SNP was associated with Ai-DSP.
Conclusions:
We preliminarily found that carrying particular combinations of functional SNPs, which are related to relatively higher dopamine synthesis and dopamine degradation and lower naïve DRD2, might indicate vulnerability to development of Ai-DSP. However, further studies are needed to validate the present results.
Insights
Certain combinations of functional single nucleotide polymorphisms (SNPs) may increase the risk of developing antipsychotic-induced dopamine supersensitivity psychosis (Ai-DSP) in patients with schizophrenia. Identifying these genetic vulnerabilities could help prevent treatment-resistant schizophrenia (TRS).
Area of Science:
- Neuroscience
- Psychiatry
- Genetics
Background:
- A substantial number of schizophrenia patients develop treatment resistance after initial antipsychotic therapy.
- Antipsychotic-induced dopamine supersensitivity psychosis (Ai-DSP) is a potential cause of treatment-resistant schizophrenia (TRS).
- Identifying genetic predispositions to Ai-DSP could aid in preventing iatrogenic TRS.
Purpose of the Study:
- To investigate the association between combinations of functional single nucleotide polymorphisms (SNPs) affecting dopaminergic pathways and the development of Ai-DSP.
- To identify genetic markers that indicate an increased risk for Ai-DSP in schizophrenia patients.
Main Methods:
- A case-control study involving 357 Japanese patients diagnosed with schizophrenia or schizoaffective disorder.
- Participants were categorized into Ai-DSP positive (Ai-DSP(+)) and Ai-DSP negative (Ai-DSP(-)) groups.
- Functional SNPs examined included rs10770141 (tyrosine hydroxylase), rs4680 (catechol-O-methyltransferase), and rs1799732/rs1800497 (DRD2 genes).
Main Results:
- No single SNP was significantly associated with Ai-DSP.
- Significantly higher proportions of Ai-DSP(+) patients carried the SNP combinations rs10770141/rs4680 (57.9%, OR 2.654, P = 0.048) and rs10770141/rs4680/rs1800497 (64.3%, OR 4.230, P = 0.029).
- These combinations are linked to higher dopamine synthesis, dopamine degradation, and lower DRD2 prevalence.
Conclusions:
- Specific combinations of functional SNPs, influencing dopamine synthesis, degradation, and DRD2 receptor prevalence, may indicate a vulnerability to developing Ai-DSP.
- These preliminary findings suggest a potential genetic basis for Ai-DSP.
- Further research is required to validate these genetic associations and their clinical implications.
Related Concept Videos
Treatment Resistant Cancers
Combining Functions
Schizophrenia
Biological Causes of Schizophrenia
Genetic Factors in Schizophrenia
The genetic basis of schizophrenia is strongly supported by family and twin...
Psychological and Sociocultural Causes of Schizophrenia
Negative and Cognitive Symptoms of Schizophrenia
Negative Symptoms
Negative symptoms of schizophrenia manifest as deficits in normal emotional and behavioral functioning, profoundly impacting daily life. Individuals with schizophrenia often display a flat affect, characterized by a near-total absence of emotional expression,...

