Regulatory T cell therapies: biological foundations, engineering strategies, and clinical translation
Терапии регуляторных T-клеток: биологические основы, инженерные стратегии и клиническая трансляция
2026-04-17
SCID: 54.1/y6mbht6w
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Regulatory T cell therapyantigen-specific Tregsautologous Tregsinduced pluripotent stem cells (iPSCs)regulatory T cells
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Abstract (AI)
Regulatory T cell (Treg) therapy has emerged as a promising strategy to control pathological immune responses in autoimmunity, graft-versus-host disease, and solid organ transplantation. Most clinical studies to date have relied on autologous Tregs expanded ex vivo, an approach that has demonstrated safety and feasibility but remains limited by variable cell quality, restricted scalability, and complex manufacturing requirements. To address these constraints, multiple alternative strategies are being developed, including the induction of regulatory phenotypes in conventional T cells, the engineering of antigen-specific Tregs, and the generation of allogeneic “off-the-shelf” regulatory cell products. In parallel, induced pluripotent stem cells (iPSCs) offer a renewable and standardized source for regulatory T cell generation, enabling extensive genetic engineering and batch consistency. Early-phase clinical trials with CD4 + Tregs have established an excellent safety profile, and initial clinical evaluation of CD8 + Tregs is now underway. This review provides a comprehensive and comparative analysis of the biological principles, engineering strategies, and translational challenges that shape the development of regulatory T cell-based immunotherapies.
Key Findings
1
Alternative strategies under development include inducing regulatory phenotypes in conventional T cells, engineering antigen-specific Tregs, and creating allogeneic off-the-shelf regulatory cell products.
2
Autologous ex vivo–expanded Treg therapy is safe and feasible in clinical studies but limited by variable cell quality, restricted scalability, and complex manufacturing.
3
Early-phase clinical trials with CD4+ Tregs show an excellent safety profile, and initial clinical evaluation of CD8+ Tregs has begun.
4
Induced pluripotent stem cells (iPSCs) can provide a renewable, standardized source for regulatory T cell generation, enabling extensive genetic engineering and batch consistency.
5
The review synthesizes biological principles, engineering strategies, and translational challenges that influence the development of regulatory T cell immunotherapies.
Research Object
Regulatory T cell (Treg) therapies (including autologous, antigen-specific, engineered, allogeneic/off-the-shelf, iPSC-derived Treg products)
Research Subject
Biological foundations, engineering strategies, and translational challenges affecting safety, scalability, antigen specificity, manufacturability, and clinical translation of Treg-based immunotherapies
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2026-04-17
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