嵌合抗原受体
T细胞
细胞生物学
转染
重编程
信使核糖核酸
向性
成纤维细胞
生物
细胞
癌症免疫疗法
HEK 293细胞
基因传递
抗原
分子生物学
化学
受体
细胞疗法
免疫疗法
抗原提呈细胞
电穿孔
Jurkat细胞
信号转导
免疫学
下调和上调
抗体
癌症研究
脾脏
作者
Qiannan Cao,Yufei Yao,Wenming Zheng,Hongqian Liu,Mingxia Jiang,Dayang Xie,Siting Zhang,Pijun Su,Huilin Yuan,Xiaoyuan Chen,Huapan Fang,Huayu Tian
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-11-20
标识
DOI:10.1101/2025.11.19.688592
摘要
Abstract The clinical success of CAR T cell therapy has underscored the need for scalable, non-invasive strategies for in vivo T cell engineering. Although mRNA delivery offers a promising alternative, current lipid-based vectors lack intrinsic T cell tropism and often rely on antibody conjugation, complicating manufacturing and raising safety concerns. Here we present an inherent T cell-activating polymer–lipid nanoparticle ( ERTLNPs ) that enable ligand-free, efficient mRNA transfection and activation of T cells in vivo . ERTLNPs , composed of p-toluenesulfonyl arginine (RT)-functionalized polyethylenimine (denoted as PEI-RT) and helper lipids, preferentially accumulate in the spleen following systemic administration. Without exogenous stimulation, ERTLNPs intrinsically activate T cells, triggering robust mRNA expression and proliferation. Mechanistically, ERTLNPs engage the PI3K/AKT/mTOR signaling axis to reprogram T cell metabolism, promoting expansion while restraining exhaustion. Systemic delivery of mRNA encoding fibroblast activation protein chimeric antigen receptor (mFAP CAR) via ERTLNPs leads to in situ generation of functional CAR T cells, which efficiently eliminate pathological fibroblasts in models of cancer and fibrosis, with minimal off-target effects. This ligand-free, metabolically reprogramming mRNA delivery platform provides a clinically translatable approach for in vivo CAR T cell generation and broadens the landscape of non-viral immunotherapeutic engineering.
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