胰腺癌空间构型与新辅助治疗和根治性切除术后疾病复发相关
Spatial Configuration of Pancreatic Cancer Is Associated with Disease Recurrence after Neoadjuvant Therapy and Curative-Intent Resection.
从标准H&E切片量化的残留癌-间质拓扑结构在PDAC新辅助治疗后产生独立预后信号,为空间风险提供细胞免疫相关性依据,并推动前瞻性验证及空间信息指导的辅助治疗策略。
英文原题:Preclinical Development of T Cells Engineered to Express a T-Cell Antigen Coupler Targeting Claudin 18.2-Positive Solid Tumors.
Preclinical Development of T Cells Engineered to Express a T-Cell Antigen Coupler Targeting Claudin 18.2-Positive Solid Tumors.
T细胞抗原偶联器(TAC)是一种嵌合受体,可在无强直信号的情况下,通过利用内源性T细胞受体复合物,促进肿瘤抗原特异性T细胞激活。
T 细胞抗原偶联剂(TAC)是一种嵌合受体,通过在内源性 T 细胞受体复合物缺乏张力性信号的情况下对其加以利用,促进肿瘤抗原特异性 T 细胞活化。既往数据表明,TAC 使 T 细胞能够在血液肿瘤和实体瘤的临床前模型中诱导持久且安全的抗肿瘤反应。在本研究中,我们描述了自体 Claudin 18.2(CLDN18.2)靶向 TAC T 细胞疗法 TAC01-CLDN18.2 的临床前药理学和安全性,为在 CLDN18.2 阳性实体瘤受试者中开展 I/II 期临床研究做准备。在筛选了推测的 TAC 构建体后,使用胃、胃食管和胰腺肿瘤模型以及来源于正常组织的人细胞,在体外和体内评估了表达最终 CLDN18.2-TAC 受体的 TAC T 细胞的特异性、活性和细胞毒性。在与多种天然表达 CLDN18.2 的 2D 肿瘤培养物以及肿瘤球状体共培养时,观察到 CLDN18.2-TAC T 细胞的 CLDN18.2 特异性活性和细胞毒性。这些效应出现在抗原水平较低的模型中,并与 CLDN18.2 表达增加呈正相关。CLDN18.2-TAC T 细胞在小鼠中有效清除了已建立的肿瘤异种移植瘤,未观察到脱靶效应或靶向/脱肿瘤效应,在反复杀伤和肿瘤再攻击实验中产生了持久疗效,并且在与代表重要器官的人细胞共培养时保持无反应性。因此,这些数据表明,CLDN18.2-TAC T 细胞可在多种 CLDN18.2 阳性实体瘤模型中诱导特异性且持久的抗肿瘤反应,且无明显 TAC 依赖性毒性,支持 TAC01-CLDN18.2 的临床开发。
The T-cell antigen coupler (TAC) is a chimeric receptor that facilitates tumor antigen-specific activation of T cells by co-opting the endogenous T-cell receptor complex in the absence of tonic signaling. Previous data demonstrate that the TAC affords T cells with the ability to induce durable and safe antitumor responses in preclinical models of hematologic and solid tumors. In this study, we describe the preclinical pharmacology and safety of an autologous Claudin 18.2 (CLDN18.2)-directed TAC T-cell therapy, TAC01-CLDN18.2, in preparation for a phase I/II clinical study in subjects with CLDN18.2-positive solid tumors. Following a screen of putative TAC constructs, the specificity, activity, and cytotoxicity of TAC T cells expressing the final CLDN18.2-TAC receptor were evaluated in vitro and in vivo using gastric, gastroesophageal, and pancreatic tumor models as well as human cells derived from normal tissues. CLDN18.2-specific activity and cytotoxicity of CLDN18.2-TAC T cells were observed in coculture with various 2D tumor cultures naturally expressing CLDN18.2 as well as tumor spheroids. These effects occurred in models with low antigen levels and were positively associated with increasing CLDN18.2 expression. CLDN18.2-TAC T cells effectively eradicated established tumor xenografts in mice in the absence of observed off-target or on-target/off-tumor effects, elicited durable efficacy in recursive killing and tumor rechallenge experiments, and remained unreactive in coculture with human cells representing vital organs. Thus, the data demonstrate that CLDN18.2-TAC T cells can induce a specific and long-lasting antitumor response in various CLDN18.2-positive solid tumor models without notable TAC-dependent toxicities, supporting the clinical development of TAC01-CLDN18.2.
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