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G protein-coupled receptor digital twins for precision and personalized medicine
Tabitha Boeringer1, Mia Pardo1, Carter J Craig1
1Receptor Biology Lab - Department of Drug Discovery, Division of Basic Sciences, H. Lee Moffitt Cancer Center, Tampa, FL 33612, United States.
None:
Precision medicine has revolutionized healthcare by tailoring treatments to individual genetic, environmental, and lifestyle profiles, with G protein-coupled receptors (GPCRs) serving as prime therapeutic targets due to their role in diverse diseases. Here we explore the transformative potential of digital twin technologies in advancing precision GPCR medicines, integrating genomic, proteomic, and real-time physiological data to create patient-specific virtual models. We trace the evolution of precision medicine from early pharmacogenetics to modern multi-omics approaches, highlighting key GPCRs-Glucagon-like peptide 1 receptor (GLP1R), chemokine receptor CXCR4, and dopamine receptor D2 (DRD2)-and their personalized therapeutic applications in cardiovascular, oncological, and neurological disorders. Advanced quantitative systems pharmacology (QSP) and artificial intelligence (AI) hold the potential to enhance digital twins by simulating complex GPCR signaling and predicting drug responses, accelerating drug discovery, and optimizing patient stratification. Here we review and conceptualize how digital twin applications will likely induce a significant impact in personalizing receptor-based therapies for multiple disorders including heart failure, cancer, metabolic disorders, as well as neurodegenerative and neuropsychiatric conditions. Ethical challenges, including data privacy, equitable access, and model validation, must however also be addressed to ensure responsible ultimate implementation to the broadest clinical audience. Technical hurdles, such as data integration and computational scalability, also require the rational and intelligent creation of standardized frameworks. By bridging molecular insights with clinical applications, digital twins offer a powerful platform for precision GPCR medicine, promising improved therapeutic outcomes through individualized treatment strategies. The triumvirate of digital twins, QSP, and AI will likely revolutionize GPCR-targeted therapies, paving the way for a new era of precision medicine while highlighting the need for ethical and technical advancements to maximize their clinical impact.
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