肝细胞癌
癌症研究
T细胞
免疫疗法
CD8型
药代动力学
细胞
医学
化学
癌症免疫疗法
细胞生长
细胞毒性T细胞
癌
肿瘤细胞
肝癌
肝肿瘤
流式细胞术
加药
不利影响
作者
Yan Huang,Shaoli Liu,Xiaoju Zhang,Bingxu Zhang,Feng Shi,Jia Zhang,Shuaibo Shao,Hongya Han,Xiaoyun Ma,Jing Xie,Jian‐Qi Zhang,Haiyan Yu,Yongchao Zhao,Jiazheng Jin,Xu Dong,Liang Liu,Jianing Wang,Yu Meng Tan,Kailin Xu,Lushuai Jin
标识
DOI:10.1038/s41467-025-66087-y
摘要
T-cell engager (TCE)-based immunotherapy is clinically validated in hematological cancers. However, application in solid tumors faces hurdles including T cell penetration, the immunosuppressive tumor microenvironment, and toxicity. We develop an mRNA-encoded TCE (MTS105) targeting Glypican-3, the hepatocellular carcinoma antigen, delivered via lipid nanoparticles directly to liver tissue. In mice, rats, and cynomolgus monkeys, MTS105 exhibits higher liver exposure versus plasma. Liver-orthotopic tumor-bearing mice achieve complete, dose-dependent regression, with fast intratumoral T cell activation owing to sustained higher liver and tumor functional TCE exposure versus conventional antibody-based TCE. In vivo, MTS105 induces intratumoral CD8 cell precursor and terminally differentiated memory subsets with high activation scores. In cynomolgus monkeys, MTS105 displays favorable, linear plasma pharmacokinetics including mRNA, ionizable lipid, and translated TCE following single and repeated-four-weekly dosing (up to 45 μg/kg). No severe adverse effects or gross pathology were observed. Our results thus support the advancement of MTS105 into clinical trials, with a first-in-human study currently underway. T-cell engager (TCE)-based immunotherapy requires further development in solid tumors due to limited T cell penetration, immunosuppressive tumor microenvironment and toxicity. The authors here develop a glypican-3 targeting mRNA TCE (MTS105) which manifests superior T cell activation and tumor regression hepatocellular carcinoma mice model comparing to conventional TCE, and safety with cynomolgus monkey studies.
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