Agent-based modeling is a rule-based, discrete-event, and spatially explicit computational modeling method that employs computational objects that instantiate the rules and interactions among the individual components ("agents") of system. Agent-based modeling is well suited to translating into a computational model the knowledge generated from basic science research, particularly with respect to translating across scales the mechanisms of cellular behavior into aggregated cell population dynamics manifesting at the tissue and organ level. This capacity has made agent-based modeling an integral method in translational systems biology (TSB), an approach that uses multiscale dynamic computational modeling to explicitly represent disease processes in a clinically relevant fashion. The initial work in the early 2000s using agent-based models (ABMs) in TSB focused on examining acute inflammation and its intersection with wound healing; the decade since has seen vast growth in both the application of agent-based modeling to a wide array of disease processes as well as methodological advancements in the use and analysis of ABM. This report presents an update on an earlier review of ABMs in TSB and presents examples of exciting progress in the modeling of various organs and diseases that involve inflammation. This review also describes developments that integrate the use of ABMs with cutting-edge technologies such as high-performance computing, machine learning, and artificial intelligence, with a view toward the future integration of these methodologies. This article is categorized under: Translational, Genomic, and Systems Medicine > Translational Medicine Models of Systems Properties and Processes > Mechanistic Models Models of Systems Properties and Processes > Organ, Tissue, and Physiological Models Models of Systems Properties and Processes > Organismal Models
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Univ Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
An, G.
Fitzpatrick, B. G.
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Loyola Marymount Univ, Dept Math, Los Angeles, CA 90045 USA
Tempest Technol, Los Angeles, CA 90045 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Fitzpatrick, B. G.
Christley, S.
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Univ Texas Southwestern Med Ctr Dallas, Dept Clin Sci, Dallas, TX 75390 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Christley, S.
Federico, P.
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Capital Univ, Dept Math Comp Sci & Phys, Columbus, OH USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Federico, P.
Kanarek, A.
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US EPA, Washington, DC 20460 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Kanarek, A.
Neilan, R. Miller
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Duquesne Univ, Dept Math & Comp Sci, Pittsburgh, PA 15219 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Neilan, R. Miller
Oremland, M.
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Ohio State Univ, Math Biosci Inst, Columbus, OH 43210 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Oremland, M.
Salinas, R.
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Appalachian State Univ, Dept Math Sci, Boone, NC 28608 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Salinas, R.
Laubenbacher, R.
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UConn Hlth, Ctr Quantitat Med, Farmington, CT USA
Jackson Lab Genom Med, Farmington, CT USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA
Laubenbacher, R.
Lenhart, S.
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Univ Tennessee, Dept Math, Knoxville, TN 37996 USA
Univ Tennessee, NIMBioS, Knoxville, TN 37996 USAUniv Chicago, Dept Surg, 5841 S Maryland Ave, Chicago, IL 60637 USA