免疫系统
免疫学
嵌合抗原受体
医学
自身免疫性疾病
T细胞
炎症
免疫疗法
细胞疗法
人性化鼠标
疾病
CTLA-4号机组
免疫耐受
调节性T细胞
间质细胞
癌症研究
机制(生物学)
间充质干细胞
受体
人类白细胞抗原
体内
周边公差
细胞
表型
自身免疫
治疗方法
抗原
临床试验
内生
离体
生物
获得性免疫系统
白细胞介素2
T细胞受体
病态的
作者
Juliang Qin,Guangyu Zhang,Ning Zhao,Bing Du,Mingyao Liu
标识
DOI:10.1146/annurev-pharmtox-060225-095155
摘要
For decades, autoimmune disease treatment depended on long-term immunosuppression, which seldom yields lasting immune tolerance and carries cumulative toxic risks. Recent cell therapies, including chimeric antigen receptor (CAR) T cells, regulatory T cells, and mesenchymal stromal cells, have induced deep remission in refractory diseases, often persisting after treatment withdrawal and indicating benefits beyond short-term inflammation suppression. However, traditional dose-exposure-response pharmacokinetic/pharmacodynamic frameworks are insufficient to account for the in vivo expansion, trafficking, and phenotypic evolution of living cellular products. Here we propose that, in autoimmune diseases, cell-based therapies exemplified by CAR T cells should be reframed from exposure-control pharmacology to state-transition pharmacology. Through endogenous expansion and immune networks, therapeutic cells may shift the immune system from a pathological toward a tolerant steady state. Because toxicities may reflect the amplification or persistence of intended mechanisms, future work requires quantitative metrics of immune state transitions and programmable strategies for precise functional control.
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