Local control of T cell fate in lymph nodes safely and durably reverses myelin-driven autoimmunity
- Senta M. Kapnick
- Emily A. Gosselin
- Shannon J. Tsai
- Robert S. Oakes
- Zahra A. Habibabady
- Marian A. Ackun-Farmmer
- Sean T. Carey
- Shrey A. Shah
- Ruochen Shen
- Eugene Froimchuk
- Haleigh B. Eppler
- Christopher J. Bridgeman
- Alexis A. Yanes
- Ryan A. McIlvaine
- Maeesha Noshin
- Lisa H. Tostanoski
- Sheneil K. Black
- Xiangbin Zeng
- Agnes Azimzadeh
- Richard N. Pierson
- Jonathan S. Bromberg
- Christopher M. Jewell
2025-11-03
Development of tolerogenic, antigen-specific immunotherapies could overcome limitations of existing treatments for inflammatory autoimmune diseases by achieving potent, durable remission without impacting healthy immune surveillance. Here, we deliver diffusion-limited polymer depots to lymph nodes to locally guide T cell fates for the treatment of multiple sclerosis (MS), an autoimmune disease that occurs when the immune system mistakenly attacks myelin. In preclinical MS models, depots loaded with myelin self-antigen and tolerizing cues mediate localized retention of activated CD4 T cells, promote myelin-specific regulatory T cells, and reshape inflammation in the central nervous system (CNS) to eliminate lesions. Selective disease reversal is achieved with a single treatment that induces long-lasting remission without hindering healthy responses to vaccine challenge with foreign antigen. Furthermore, depots offer favorable chemistry and manufacturing control features and are well tolerated in non-human primates. This work supports a clinically feasible concept for inducing safe, effective, antigen-specific tolerance without systemic or repeated dosing.