效应器
功能(生物学)
体内
细胞因子
分泌物
免疫系统
体外
移植
调节器
表型
免疫学
生物
细胞
T细胞
临床疗效
神经科学
医学
细胞生物学
移植排斥反应
相关性(法律)
效力
下调和上调
免疫抑制
细胞功能
计算生物学
细胞生长
药理学
细胞疗法
临床意义
限制
离体
电池类型
癌症研究
杀伤力
免疫疗法
临床试验
表达式(计算机科学)
细胞培养
遗传增强
移植物排斥
作者
Adeel Saleem,Peng Qi,Ziqin Tang,Yasmin R. Mohseni,Cristiano Scottà,Panicos Shangaris,Kimberly Smit,Wilbert P. Vermeij,Fadi Issa,Giovanna Lombardi,Gilbert O. Fruhwirth
标识
DOI:10.1016/j.ymthe.2026.02.001
摘要
Regulatory T cell (Treg) therapy emerges for various indications associated with a breakdown of immune tolerance. Antigen-specific chimeric antigen receptor (CAR) Tregs are frontrunners for transplantation and autoimmune diseases and are currently being clinically evaluated. We aimed to link CAR-antigen engagement with immunosuppressive cargo release into the local microenvironment to boost efficacy and reduce side effects. We used our HLA-A∗02 CAR and immunosuppressive interleukin-10 (IL-10) as model components to generate human CAR Tregs that release IL-10 upon CAR engagement. These were compared to CAR Tregs with constitutive or no IL-10 expression by evaluating phenotypes, antigen-specific IL-10 release, and suppression of effector cell proliferation in vitro and performance in vivo in a humanized xenogeneic graft-versus-host disease (xeno-GvHD) model. We demonstrated successful multi-construct engineering of CAR Tregs, which released upon CAR engagement 2.5-fold more IL-10 than CAR Tregs lacking the corresponding antigen-specific IL-10 secretion module. Neither phenotype nor function was affected by expressing this module. In the xeno-GvHD model, we showed the beneficial effect of IL-10 release, particularly evident when compared to constitutive IL-10 expression that impaired CAR-Treg efficacy. We provide first proof-of-principle for engineering human CAR Tregs to release an immunosuppressive cytokine upon CAR engagement. This approach will both enhance the potency of CAR Tregs at the intended target sites and limit their off-target effects.
科研通智能强力驱动
Strongly Powered by AbleSci AI