医学
细胞因子释放综合征
嵌合抗原受体
免疫疗法
免疫系统
亚临床感染
化疗
临床终点
毒性
免疫学
细胞因子
实体瘤
细胞疗法
环磷酰胺
药代动力学
肿瘤科
内科学
T细胞
细胞
癌症研究
进行性疾病
疾病
癌症
白细胞清除术
移植物抗宿主病
抗体
临床研究阶段
免疫抑制
移植
淋巴瘤
抗原
药品
抗体疗法
临床试验
实体瘤疗效评价标准
药理学
作者
Chang Liu,Jiarui Li,Dan Liu,Panpan Zhang,Miao Zhang,Ran Xue,J. Gong,Lian Liu,Min Tao,Siyuan Cheng,Ting Xu,Jiajia Yuan,Yanshuo Cao,Z. Wang,Yakun Wang,Jun Zhou,Ming Lu,Zhi Peng,Zhihao Lu,Jian Li
标识
DOI:10.1158/1078-0432.ccr-25-4600
摘要
PURPOSE: The aim of the study was to evaluate the safety, pharmacokinetics, and preliminary clinical activity of UTAA06, an "off-the-shelf" allogeneic B7-H3-targeted chimeric antigen receptor (CAR) Vδ1T-cell therapy, in patients with pretreated, advanced B7-H3-positive solid tumors. PATIENTS AND METHODS: In this first-in-human, phase I, dose-escalation study (NCT06372236), 10 patients with advanced solid tumors (including gastric, colorectal, hepatocellular, ovarian, and neuroendocrine cancers) were enrolled. Following lymphodepletion chemotherapy (cyclophosphamide and fludarabine), patients received UTAA06 infusion across three dose levels (5 × 108, 8 × 108, or 1 × 109 cells). The primary endpoint was safety. Secondary endpoints included pharmacokinetics and antitumor efficacy. RESULTS: UTAA06 demonstrated a manageable safety profile; no GVHD was observed, and cytokine release syndrome was limited to two transient grade 1 events. A single dose-limiting toxicity (grade 3 pneumonitis) was reported in one patient at the 5 × 108 cell dose level. Although UTAA06 demonstrated signals of biological activity, including transient reductions in serum tumor markers in 50% of patients, no objective response by RECIST v1.1 criteria was observed. Further analysis identified that the limited CAR T-cell persistence was likely driven by subclinical host-versus-graft rejection. CONCLUSIONS: This study provides clinical proof of concept for allogeneic B7-H3-targeted CAR-Vδ1T cells as a safe platform with low risk of GVHD and demonstrable biological activity in solid tumors. However, clinical efficacy was constrained by limited cellular persistence caused by host immune rejection. Future strategies are required to enhance the durability and therapeutic potential of this allogeneic approach.
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