TY - JOUR
T1 - A Comprehensive 4-layered In Silico Pharmacogenomics Analysis of the Genetic Addiction Risk Severity (GARS) Test
T2 - Strong Genetic Evidence Supporting GARS as a Novel Personalized Pre-addiction Assessment Tool in the Opioid Crisis Era
AU - Sharafshah, Alireza
AU - Lewandrowski, Kai Uwe
AU - Elman, Igor
AU - Baron, David
AU - Thanos, Panayotis K.
AU - Hanna, Colin
AU - Gold, Mark S.
AU - Badgaiyan, Rajendra D.
AU - Cadet, Jean Lud
AU - Modestino, Edward J.
AU - Braverman, Eric R.
AU - Dennen, Catherine A.
AU - Makale, Milan
AU - Sunder, Keerthy
AU - Murphy, Kevin T.
AU - Bowirrat, Abdalla
AU - Pinhasov, Albert
AU - Gondre-Lewis, Marjorie
AU - Gardner, Eliot
AU - Sipple, Daniel
AU - Jafari, Nicole
AU - Zeine, Foojan
AU - Khalsa, Jag
AU - Fiorelli, Rossano Kepler Alvim
AU - Blum, Kenneth
N1 - Publisher Copyright:
© 2025 Bentham Science Publishers
PY - 2025
Y1 - 2025
N2 - Background: Overdose involving opioids is the black heart of the addiction crisis. “Pre-addiction,” as an encouraging concept by NIDA and NIAAA, seems best captured with the construct of dopamine dysregulation. Referring to the abundant publications on “Reward Deficiency Syndrome” (RDS), Genetic Addiction Risk Score (GARS) test, RDSQ29, and KB220, Pre-addiction can be referred to as “reward dysregulation” as a suitable suggestion. The hypothesis is that the true phenotype is RDS, and other behavioral disorders are endophenotypes where the genetic variants play important roles, specifically in the Brain Reward Cascade (BRC). Methods: This study tested the pharmacogenomics of the GARS panel by a multi-model in silico investigation in four layers: 1) Protein-Protein Interactions (PPIs); 2) Gene Regulatory Networks (GRNs); 3) Disease, drugs and chemicals (DDCs); and 4) Gene Coexpression Networks (GCNs). Results: All in silico findings were combined in an Enrichment Analysis for 59 refined genes, which represented highly significant associations of dopamine pathways in the BRC and supported our hypothesis. Conclusion: This paper provides scientific evidence for the importance of incorporating GARS as a predictive test to identify Pre-addiction, introduce unique therapeutic targets assisting in the treatment of pain, drug dosing of prescription pharmaceuticals, and identify the risk for subsequent addiction early in -life.
AB - Background: Overdose involving opioids is the black heart of the addiction crisis. “Pre-addiction,” as an encouraging concept by NIDA and NIAAA, seems best captured with the construct of dopamine dysregulation. Referring to the abundant publications on “Reward Deficiency Syndrome” (RDS), Genetic Addiction Risk Score (GARS) test, RDSQ29, and KB220, Pre-addiction can be referred to as “reward dysregulation” as a suitable suggestion. The hypothesis is that the true phenotype is RDS, and other behavioral disorders are endophenotypes where the genetic variants play important roles, specifically in the Brain Reward Cascade (BRC). Methods: This study tested the pharmacogenomics of the GARS panel by a multi-model in silico investigation in four layers: 1) Protein-Protein Interactions (PPIs); 2) Gene Regulatory Networks (GRNs); 3) Disease, drugs and chemicals (DDCs); and 4) Gene Coexpression Networks (GCNs). Results: All in silico findings were combined in an Enrichment Analysis for 59 refined genes, which represented highly significant associations of dopamine pathways in the BRC and supported our hypothesis. Conclusion: This paper provides scientific evidence for the importance of incorporating GARS as a predictive test to identify Pre-addiction, introduce unique therapeutic targets assisting in the treatment of pain, drug dosing of prescription pharmaceuticals, and identify the risk for subsequent addiction early in -life.
KW - Genetic Addiction Risk Score (GARS)
KW - Pre-addiction
KW - Reward Deficiency Syndrome (RDS)
KW - dopamine dysregulation
KW - in silico
KW - pharmacogenomics
UR - https://www.scopus.com/pages/publications/105013205978
U2 - 10.2174/0113892010353450250408114725
DO - 10.2174/0113892010353450250408114725
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C2 - 40247807
AN - SCOPUS:105013205978
SN - 1389-2010
VL - 26
SP - 2153
EP - 2180
JO - Current Pharmaceutical Biotechnology
JF - Current Pharmaceutical Biotechnology
IS - 13
ER -