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Reduced tumor growth in a mouse model of schizophrenia, lacking the dopamine transporter
Masanori Asada1, Satoru Ebihara, Yohtaro Numachi
1Department of Geriatrics and Gerontology, Tohoku University School of Medicine, Sendai, Japan. masanori.asada@gmail.com
Abstract:
The incidence of cancer in patients with schizophrenia has been reported to be lower that in the general population. On the other hand, it is well established that patients with schizophrenia have a hyper-dopaminergic system and dopamine has the ability to inhibit tumor angiogenesis. Therefore, in order to investigate the molecular mechanisms responsible for the lower cancer risk in schizophrenic patients, we used a mouse model of schizophrenia, which shows hyper-dopaminergic transmission in the nerve terminals of dopaminergic neurons. Here, we hypothesized that tumor growth was reduced in a mouse model of schizophrenia, lacking the dopamine transporter (DAT), and investigated tumor growth and angiogenesis in DAT knockout mice. The subcutaneous tumor in mice inoculated with cancer cells was smaller in DAT-/- mice than in the wild type (p < 0.05); however, the level of plasma dopamine in DAT-/- mice was lower than that of control littermates. Using human umbilical vascular endothelial cells (HUVEC), we examined dopamine signaling through dopamine D(1) receptor (D(1)R) and D(2)R. Dopamine stimulation slightly decreased the surface expression of vascular endothelial growth factor receptor-2 (VEGF-R2) but induced the phosphorylation of VEGF-R2 through Src in HUVEC. In addition, DAT-/- mice had less D(1)R. Both pharmacological and genetic interruption of D(1)R showed inhibited tumor growth. These results suggest that modulation of the dopaminergic system may contribute to cancer therapy.
Insights
Schizophrenia patients show lower cancer incidence, potentially due to dopamine
Area of Science:
- Neuroscience
- Oncology
- Pharmacology
Background:
- Patients with schizophrenia exhibit a hyper-dopaminergic system.
- Dopamine possesses the ability to inhibit tumor angiogenesis.
- Schizophrenia patients demonstrate a lower incidence of cancer compared to the general population.
Purpose of the Study:
- To investigate the molecular mechanisms underlying the reduced cancer risk in schizophrenia.
- To examine tumor growth and angiogenesis in a mouse model lacking the dopamine transporter (DAT).
Main Methods:
- Utilized a DAT knockout (DAT-/-) mouse model exhibiting hyper-dopaminergic transmission.
- Assessed subcutaneous tumor growth and angiogenesis in DAT-/- mice and wild-type controls.
- Investigated dopamine signaling pathways in human umbilical vascular endothelial cells (HUVEC) via dopamine D(1) receptor (D(1)R) and D(2)R.
Main Results:
- Tumor growth was significantly reduced in DAT-/- mice compared to wild-type controls (p < 0.05).
- DAT-/- mice exhibited lower plasma dopamine levels.
- Dopamine stimulation affected vascular endothelial growth factor receptor-2 (VEGF-R2) expression and phosphorylation in HUVEC.
- DAT-/- mice showed reduced D(1)R levels.
- Pharmacological and genetic interruption of D(1)R inhibited tumor growth.
Conclusions:
- The dopaminergic system plays a role in regulating tumor growth and angiogenesis.
- Modulation of the dopaminergic system, particularly D(1)R, presents a potential therapeutic strategy for cancer treatment.
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