Monoamine and genome-wide DNA methylation investigation in behavioral addiction
Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug addiction, alterations in biological mechanisms, such as monoamines and epigenetic processes, have been suggested, whereas whether such mech...
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Published in | Scientific reports Vol. 10; no. 1; p. 11760 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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16.07.2020
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Abstract | Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug addiction, alterations in biological mechanisms, such as monoamines and epigenetic processes, have been suggested, whereas whether such mechanisms are also altered in BA remains unknown. In this preliminary study with a small sample size, we investigated monoamine concentrations and genome-wide DNA methylation in blood samples from BA patients and control (CT) subjects. Higher dopamine (DA) metabolites and the ratio between DA and its metabolites were observed in the BA group than in the CT group, suggesting increased DA turnover in BA. In the methylation assay, 186 hyper- or hypomethylated CpGs were identified in the BA group compared to the CT group, of which 64 CpGs were further identified to correlate with methylation status in brain tissues with database search. Genes identified with hyper- or hypomethylation were not directly associated with DA transmission, but with cell membrane trafficking and the immune system. Some of the genes were also associated with psychiatric disorders, such as drug addiction, schizophrenia, and autism spectrum disorder. These results suggest that BA may involve alterations in epigenetic regulation of the genes associated with synaptic transmission, including that of monoamines, and neurodevelopment. |
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AbstractList | Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug addiction, alterations in biological mechanisms, such as monoamines and epigenetic processes, have been suggested, whereas whether such mechanisms are also altered in BA remains unknown. In this preliminary study with a small sample size, we investigated monoamine concentrations and genome-wide DNA methylation in blood samples from BA patients and control (CT) subjects. Higher dopamine (DA) metabolites and the ratio between DA and its metabolites were observed in the BA group than in the CT group, suggesting increased DA turnover in BA. In the methylation assay, 186 hyper- or hypomethylated CpGs were identified in the BA group compared to the CT group, of which 64 CpGs were further identified to correlate with methylation status in brain tissues with database search. Genes identified with hyper- or hypomethylation were not directly associated with DA transmission, but with cell membrane trafficking and the immune system. Some of the genes were also associated with psychiatric disorders, such as drug addiction, schizophrenia, and autism spectrum disorder. These results suggest that BA may involve alterations in epigenetic regulation of the genes associated with synaptic transmission, including that of monoamines, and neurodevelopment. Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug addiction, alterations in biological mechanisms, such as monoamines and epigenetic processes, have been suggested, whereas whether such mechanisms are also altered in BA remains unknown. In this preliminary study with a small sample size, we investigated monoamine concentrations and genome-wide DNA methylation in blood samples from BA patients and control (CT) subjects. Higher dopamine (DA) metabolites and the ratio between DA and its metabolites were observed in the BA group than in the CT group, suggesting increased DA turnover in BA. In the methylation assay, 186 hyper- or hypomethylated CpGs were identified in the BA group compared to the CT group, of which 64 CpGs were further identified to correlate with methylation status in brain tissues with database search. Genes identified with hyper- or hypomethylation were not directly associated with DA transmission, but with cell membrane trafficking and the immune system. Some of the genes were also associated with psychiatric disorders, such as drug addiction, schizophrenia, and autism spectrum disorder. These results suggest that BA may involve alterations in epigenetic regulation of the genes associated with synaptic transmission, including that of monoamines, and neurodevelopment.Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug addiction, alterations in biological mechanisms, such as monoamines and epigenetic processes, have been suggested, whereas whether such mechanisms are also altered in BA remains unknown. In this preliminary study with a small sample size, we investigated monoamine concentrations and genome-wide DNA methylation in blood samples from BA patients and control (CT) subjects. Higher dopamine (DA) metabolites and the ratio between DA and its metabolites were observed in the BA group than in the CT group, suggesting increased DA turnover in BA. In the methylation assay, 186 hyper- or hypomethylated CpGs were identified in the BA group compared to the CT group, of which 64 CpGs were further identified to correlate with methylation status in brain tissues with database search. Genes identified with hyper- or hypomethylation were not directly associated with DA transmission, but with cell membrane trafficking and the immune system. Some of the genes were also associated with psychiatric disorders, such as drug addiction, schizophrenia, and autism spectrum disorder. These results suggest that BA may involve alterations in epigenetic regulation of the genes associated with synaptic transmission, including that of monoamines, and neurodevelopment. |
ArticleNumber | 11760 |
Author | Won, Moojun Goto, Yukiori Lee, Young-A Ishikawa, Emi Asaoka, Yui Morita, Tomonari |
Author_xml | – sequence: 1 givenname: Yui surname: Asaoka fullname: Asaoka, Yui organization: Primate Research Institute, Kyoto University – sequence: 2 givenname: Moojun surname: Won fullname: Won, Moojun organization: Kyowa Hospital – sequence: 3 givenname: Tomonari surname: Morita fullname: Morita, Tomonari organization: Kyowa Hospital – sequence: 4 givenname: Emi surname: Ishikawa fullname: Ishikawa, Emi organization: Kyowa Hospital – sequence: 5 givenname: Young-A surname: Lee fullname: Lee, Young-A organization: Department of Food Science and Nutrition, Daegu Catholic University – sequence: 6 givenname: Yukiori surname: Goto fullname: Goto, Yukiori email: goto.yukiori.5c@kyoto-u.ac.jp organization: Primate Research Institute, Kyoto University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/32678220$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_3390_futurepharmacol4010009 crossref_primary_10_3389_fpsyt_2020_561713 crossref_primary_10_3389_fphar_2022_984997 crossref_primary_10_1093_ijnp_pyad005 crossref_primary_10_1038_s41398_021_01502_8 |
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Snippet | Behavioral addiction (BA) is characterized by repeated, impulsive and compulsive seeking of specific behaviors, even with consequent negative outcomes. In drug... |
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SubjectTerms | 631/378/1689/5 631/378/2584/2585 631/477/2811 Addictions Autism Behavior, Addictive - genetics Behavior, Addictive - metabolism Biogenic Monoamines - metabolism Case-Control Studies Cell membranes Computational Biology - methods Deoxyribonucleic acid Disease Susceptibility DNA DNA Methylation Dopamine Drug addiction Epigenesis, Genetic Epigenetics Female Gene Expression Profiling Gene regulation Genome-Wide Association Study Genomes Humanities and Social Sciences Humans Immune system Male Membrane trafficking Mental disorders Mental Disorders - genetics Mental Disorders - metabolism Metabolites Monoamines multidisciplinary ROC Curve Schizophrenia Science Science (multidisciplinary) Synaptic transmission |
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Title | Monoamine and genome-wide DNA methylation investigation in behavioral addiction |
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