Design Principles of the T cell Immune Response
| dc.contributor.advisor | Nourmohammad, Armita | |
| dc.contributor.author | Ukogu, Obinna | |
| dc.date.accessioned | 2026-08-11T19:22:25Z | |
| dc.date.issued | 2026-08-11 | |
| dc.date.submitted | 2026 | |
| dc.description | Thesis (Ph.D.)--University of Washington, 2026 | |
| dc.description.abstract | The immune system protects its host by detecting and neutralizing evolving pathogens and malignant cells. To prevent self-damage while ensuring host survival, this response must be both proportionate and rapid, requiring the massive expansion of a small pool of specialized cells. In jawed vertebrates, T cells are the central architects of this balance: they kill infected or malignant cells, coordinate B cell activity, and maintain self-tolerance. Despite recent progress in T cell immunology, the design principles that guide T cell responses, and their limitations, remain unclear. Here, we present three mathematical models—incorporating ecological dynamics, stochastic processes, and optimization theory—to study T cell responses across three distinct contexts: acute infection, cancer, and the complex microbial ecology of the gut. By synthesizing these frameworks, we demonstrate how the mechanistic design (e.g., gene regulation and repertoire allocation) of the T cell response influences functional objectives, such as threat clearance, memory formation and avoidance of self-damage. Crucially, we identify trade-offs between objectives and show how T cell responses can be re-engineered to navigate them. Our results provide a theoretical basis for the rational design of immunotherapies, vaccines, and microbial therapies by pinpointing high-leverage mechanistic targets to enhance or redirect T cell responses. | |
| dc.embargo.terms | Open Access | |
| dc.format.mimetype | application/pdf | |
| dc.identifier.other | Ukogu_washington_0250E_29844.pdf | |
| dc.identifier.uri | https://hdl.handle.net/1773/57141 | |
| dc.language.iso | en_US | |
| dc.rights | CC BY | |
| dc.subject | cell-fate decision-making | |
| dc.subject | design principles | |
| dc.subject | feedback control | |
| dc.subject | microbial ecology | |
| dc.subject | optimality | |
| dc.subject | T cell | |
| dc.subject | Applied mathematics | |
| dc.subject | Biophysics | |
| dc.subject | Immunology | |
| dc.subject.other | Applied mathematics | |
| dc.title | Design Principles of the T cell Immune Response | |
| dc.type | Thesis |
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