英文原题:Integrated Imaging Probe and Bispecific Antibody Development Enables In Vivo Targeting of Glypican-3-Expressing Hepatocellular Carcinoma.
Integrated Imaging Probe and Bispecific Antibody Development Enables In Vivo Targeting of Glypican-3-Expressing Hepatocellular Carcinoma.
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Glypican-3 (GPC3) 是一种对肝细胞癌 (HCC) 具有高灵敏度和特异性的蛋白聚糖。我们描述了靶向 GPC3 的光学成像探针和 T 细胞重定向抗体 (TRAB) 的集成开发与验证,作为用于 HCC 检测和治疗的诊疗一体化策略。从短肽开发了一种新型 TRAB,靶向 HCC 肿瘤细胞上的 GPC3 以及 CD3 T 细胞受体,同时开发了一种独特的 GPC3 特异性光学成像探针。使用 IFNγ 释放和 calcein-AM 实验在体外评估了 GPC3/CD3 TRAB 的疗效。使用患者来源的异种移植模型评估了 GPC3/CD3 TRAB 的体内疗效以及 GPC3 成像探针用于检测 GPC3+ HCC 的效果。
与体外对照相比,GPC3/CD3 TRAB 导致非活性外周血 T 细胞的 IFNγ 释放呈剂量依赖性升高 (P = 0.001),并引起更高的肿瘤细胞裂解 (P = 0.01)。瘤内注射 GPC3/CD3 TRAB 导致 GPC3+ 肿瘤的肿瘤倍增时间显著延长,同时光学成像中 HiLyte 488 偶联的 GPC3 特异性肽的肿瘤荧光信号相应减少。这些数据表明,使用源自小肽的 GPC3/CD3 TRAB 靶向 HCC 细胞,能够在体外和体内有效激活 T 细胞并诱导针对 GPC3+ HCC 肿瘤细胞的细胞毒性反应。GPC3 特异性光学成像能够检测 GPC3+ HCC 细胞,并对过继免疫治疗的肿瘤反应进行无创监测。靶向治疗药物和分子成像探针的集成开发为癌症诊疗一体化的发展提供了有前景的范式。
Glypican-3 (GPC3) is a proteoglycan with high sensitivity and specificity for hepatocellular carcinoma (HCC).
We describe the integrated development and validation of a GPC3-targeting optical imaging probe and T cell-redirecting antibody (TRAB) as a theranostic strategy for the detection and treatment of HCC. A novel TRAB targeting GPC3 on HCC tumor cells and the CD3 T-cell receptor as well as a distinct GPC3-specific optical imaging probe were developed from a short peptide. The efficacy of GPC3/CD3 TRAB was evaluated in vitro using IFNγ release and calcein-AM assays. Patient-derived xenografts were used to assess the in vivo efficacy of GPC3/CD3 TRAB and the GPC3 imaging probe for the detection of GPC3+ HCC. GPC3/CD3 TRAB caused a dose-dependent escalation in IFNγ release from inactive peripheral blood T cells (P = 0. 001) and higher tumor-cell lysis (P = 0. 01) compared with controls in vitro.
Intratumorally injected GPC3/CD3 TRAB resulted in significant prolongation of tumor doubling time in the GPC3+ tumors, with an associated reduction of tumor fluorescent signal from the HiLyte 488-conjugated GPC3-specific peptide on optical imaging. These data demonstrate that HCC cell targeting using a GPC3/CD3 TRAB derived from a small peptide enabled effective T-cell activation and induction of a cytotoxic response toward GPC3+ HCC tumor cells both in vitro and in vivo.
GPC3-specific optical imaging enabled the detection of the GPC3+ HCC cells and noninvasive monitoring of tumor response to adoptive immunotherapy. The integrated development of a targeted therapeutic and molecular imaging probe provides a promising paradigm for the development of cancer theranostics.
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