The growing gap between organ demand and clinical availability has renewed interest in immune-evasive graft strategies, yet rejection and lifelong immunosuppression remain major barriers to durable success. Advances in genome editing enable immune-evasive cell platforms designed to avoid immune recognition while replacing missing function in allogeneic settings. This review summarizes current strategies for engineering immune-evasive grafts that simultaneously suppress adaptive and innate immune responses. We discuss how coordinated modulation of antigen presentation and immune checkpoint pathways can protect transplanted allogeneic cells and tissues from T, NK, and macrophage-mediated rejection. We also present the emerging concept of integrating hypoimmune engineering with genetically modified porcine donors, where extensive genome editing has reduced, but not eliminated, xenogeneic immune barriers. Combining donor genome modification with immune-evasive graft design represents a promising conceptual advance toward xenograft survival, though whether full elimination of systemic immunosuppression is achievable remains to be established clinically. We further examine how the regulatory landscape for these products is evolving across major jurisdictions, and how differences in approval pathways, manufacturing standards, and long-term surveillance requirements shape the path to clinical translation. Finally, we outline the safety considerations and remaining limitations in immune evasion that must be addressed to enable clinical implementation.

Hypoimmune platforms: from rejection to immune evasion and regulatory implications / Campo, F., Bellini, M.I., Scholz, H., Piemonti, L., Citro, A.. - In: TRANSPLANT INTERNATIONAL. - ISSN 1432-2277. - 39:(2026). [10.3389/ti.2026.16845]

Hypoimmune platforms: from rejection to immune evasion and regulatory implications

Bellini, Maria Irene
Secondo
;
2026

Abstract

The growing gap between organ demand and clinical availability has renewed interest in immune-evasive graft strategies, yet rejection and lifelong immunosuppression remain major barriers to durable success. Advances in genome editing enable immune-evasive cell platforms designed to avoid immune recognition while replacing missing function in allogeneic settings. This review summarizes current strategies for engineering immune-evasive grafts that simultaneously suppress adaptive and innate immune responses. We discuss how coordinated modulation of antigen presentation and immune checkpoint pathways can protect transplanted allogeneic cells and tissues from T, NK, and macrophage-mediated rejection. We also present the emerging concept of integrating hypoimmune engineering with genetically modified porcine donors, where extensive genome editing has reduced, but not eliminated, xenogeneic immune barriers. Combining donor genome modification with immune-evasive graft design represents a promising conceptual advance toward xenograft survival, though whether full elimination of systemic immunosuppression is achievable remains to be established clinically. We further examine how the regulatory landscape for these products is evolving across major jurisdictions, and how differences in approval pathways, manufacturing standards, and long-term surveillance requirements shape the path to clinical translation. Finally, we outline the safety considerations and remaining limitations in immune evasion that must be addressed to enable clinical implementation.
2026
genome editing; hypoimmune; islet transplantation; regulatory; xenotransplantation;
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Hypoimmune platforms: from rejection to immune evasion and regulatory implications / Campo, F., Bellini, M.I., Scholz, H., Piemonti, L., Citro, A.. - In: TRANSPLANT INTERNATIONAL. - ISSN 1432-2277. - 39:(2026). [10.3389/ti.2026.16845]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1773674
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