ArticleCellular and molecular neurobiology2024
A Pharmacogenomics-Based In Silico Investigation of Opioid Prescribing in Post-operative Spine Pain Management and Personalized Therapy.
Article in Cellular and molecular neurobiology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 14 papers, 1 of them a synthesis that pooled it.
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Who cites it
14 citing papers in PubMed, 1 synthesis or guideline pooled it.
- A Multi-Ancestry GWAS Meta-Analysis Integrated with In-Depth Silico, Systems Biology, and Pharmacogenomics Approaches on Alzheimer's Disease Among 1,198,689 Subjects.Journal of molecular neuroscience : MN · 2025Pooled it
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- Beyond Stigma-Integrating Neurobiology, Genetics, and Awareness Integration Theory in Addiction Recovery.Psychology research and behavior management · 2026Article
- PGx-BasedCurrent neuropharmacology · 2026Article
- Mollugin: A Comprehensive Review of Its Multifaceted Pharmacological Properties and Therapeutic Potential.International journal of molecular sciences · 2025Review
- Billions Spent, Few Saved: Rethinking National Institutes of Health HEAL Initiative in Light of Dopaminergic Alternatives to the Opioid Trap.International journal of spine surgery · 2025Article
- Article
- Mapping the Role of P-gp in Multidrug Resistance: Insights from Recent Structural Studies.International journal of molecular sciences · 2025Review
- Biochemical strategies for opioid-sparing pain management in the operating room.Biochemistry and biophysics reports · 2025Review
- The Rise of Fentanyl: Molecular Aspects and Forensic Investigations.International journal of molecular sciences · 2025Review
- A Comprehensive 4-layeredCurrent pharmaceutical biotechnology · 2025Article
- Cocaine self-administration attenuates brain glucose metabolism and functional connectivity in rats.PloS one · 2025Article
- Addictive Behavior and Evolutionary Adaptation: Mitigated through Genetic Addiction Risk Severity Early Identification and Awareness Integration Theory.Medical research archives · 2024Article
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Authors and funding
6 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Considering the variability in individual responses to opioids and the growing concerns about opioid addiction, prescribing opioids for postoperative pain management after spine surgery presents significant challenges. Therefore, this study undertook a novel pharmacogenomics-based in silico investigation of FDA-approved opioid medications. The DrugBank database was employed to identify all FDA-approved opioids. Subsequently, the PharmGKB database was utilized to filter through all variant annotations associated with the relevant genes. In addition, the dpSNP ( https://www.ncbi.nlm.nih.gov/snp/ ), a publicly accessible repository, was used. Additional analyses were conducted using STRING-MODEL (version 12), Cytoscape (version 3.10.1), miRTargetLink.2, and NetworkAnalyst (version 3). The study identified 125 target genes of FDA-approved opioids, encompassing 7019 variant annotations. Of these, 3088 annotations were significant and pertained to 78 genes. During variant annotation assessments (VAA), 672 variants remained after filtration. Further in-depth filtration based on variant functions yielded 302 final filtered variants across 56 genes. The Monoamine GPCRs pathway emerged as the most significant signaling pathway. Protein-protein interaction (PPI) analysis revealed a fully connected network comprising 55 genes. Gene-miRNA Interaction (GMI) analysis of these 55 candidate genes identified miR-16-5p as a pivotal miRNA in this network. Protein-Drug Interaction (PDI) assessment showed that multiple drugs, including Ibuprofen, Nicotine, Tramadol, Haloperidol, Ketamine, L-Glutamic Acid, Caffeine, Citalopram, and Naloxone, had more than one interaction. Furthermore, Protein-Chemical Interaction (PCI) analysis highlighted that ABCB1, BCL2, CYP1A2, KCNH2, PTGS2, and DRD2 were key targets of the proposed chemicals. Notably, 10 chemicals, including carbamylhydrazine, tetrahydropalmatine, Terazosin, beta-methylcholine, rubimaillin, and quinelorane, demonstrated dual interactions with the aforementioned target genes. This comprehensive review offers multiple strong, evidence-based in silico findings regarding opioid prescribing in spine pain management, introducing 55 potential genes. The insights from this report can be applied in exome analysis as a pharmacogenomics (PGx) panel for pain susceptibility, facilitating individualized opioid prescribing through genotyping of related variants. The article also points out that African Americans represent an important group that displays a high catabolism of opioids and suggest the need for a personalized therapeutic approach based on genetic information.
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