Lymph node–targeted DNA engages TBK1/IFN-I–driven innate immunity to induce potent T cell responses and durable memory in mice and NHPs
- Martin P. Steinbuck
- Lochana M. Seenappa
- Wei Zhan
- Erica Palmer
- Mimi M. Jung
- Aniela Jakubowski
- Xavier Cabana-Puig
- Lisa K. McNeil
- Christopher M. Haqq
- Katherine A. Fitzgerald
- Peter C. DeMuth
2026-05-29
Adjuvants are immunoactivators capable of shaping the magnitude and quality of antigen-specific immune responses induced by subunit immunization. Presently, there is an acute need for effective adjuvants that safely induce durable and balanced humoral and cellular responses. Here, we engineered a class of Amphiphile (AMP)–modified, immunostimulatory DNA adjuvants designed for targeted delivery to lymph nodes and enhanced stimulation of TANK-binding kinase 1 (TBK1)–mediated danger-sensing pathways to generate strong adaptive immunity and long-term memory with potent recall potential. AMP-DNA adjuvants induced robust interferon type-I (IFN-I)–driven inflammatory environments in mouse and nonhuman primate (NHP) lymph nodes, leading to significantly enhanced cytokine secretion by polyfunctional CD8 + and CD4 + T cells in multiple tissues, as well as strongly elevated T helper cell 1 (T H 1)–associated and neutralizing antibody responses, in the absence of systemic toxicity. These results demonstrate that AMP modification enables lymph node–targeted DNA adjuvants to potently activate IFN-I signaling to generate substantial cellular and humoral responses crucial for vaccine efficacy.