CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Immuno-PET Monitoring of Lymphocytes Using the CD8-Specific Antibody REGN5054.
Immuno-PET Monitoring of Lymphocytes Using the CD8-Specific Antibody REGN5054.
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评估肿瘤免疫微环境中的免疫细胞亚群,有助于深入理解癌症免疫治疗应答。然而,利用活检评估肿瘤免疫微环境存在挑战,包括可能的取样误差、无法长期反复取样、部分组织/器官难以获取,以及单次活检无法反映同一患者不同肿瘤病灶之间的差异。免疫正电子发射断层成像(PET)是一种有前景的转化成像方法,可克服这些局限并评估肿瘤微环境变化。
我们开发了89Zr-DFO-REGN5054,这是一种全人源CD8A特异性抗体偶联物,用于评估治疗前后CD8阳性TIL(肿瘤浸润淋巴细胞)。
我们通过多种检测,包括体外T细胞激活、增殖和细胞因子生成,以及体内病毒清除和CD8受体占有率,证明REGN5054对T细胞活性影响很小。临床前免疫PET研究显示,在CD8基因人源化、免疫功能完整小鼠(VelociT小鼠)中,89Zr-DFO-REGN5054可特异性检测淋巴组织中的CD8阳性T细胞,并识别CD20×CD3 T细胞激活型双特异性抗体REGN1979(odronextamab)治疗后两个应答模型中CD8阳性TIL的变化。食蟹猴毒理研究未见明显毒性;猴免疫PET成像显示,该示踪剂清除呈剂量依赖性,并特异性靶向淋巴组织。
本研究支持在癌症免疫治疗患者中开展89Zr-DFO-REGN5054临床研究,以监测T细胞应答。
Assessment of immune-cell subsets within the tumor immune microenvironment is a powerful approach to better understand cancer immunotherapy responses.
However, the use of biopsies to assess the tumor immune microenvironment poses challenges, including the potential for sampling error, restricted sampling over time, and inaccessibility of some tissues/organs, as well as the fact that single biopsy analyses do not reflect discordance across multiple intrapatient tumor lesions. Immuno-positron emission tomography (PET) presents a promising translational imaging approach to address the limitations and assess changes in the tumor microenvironment.
We have developed 89Zr-DFO-REGN5054, a fully human CD8A-specific antibody conjugate, to assess CD8+ tumor-infiltrating lymphocytes (TIL) pre- and posttherapy.
We used multiple assays, including in vitro T-cell activation, proliferation, and cytokine production, and in vivo viral clearance and CD8 receptor occupancy, to demonstrate that REGN5054 has minimal impact on T-cell activity. Preclinical immuno-PET studies demonstrated that 89Zr-DFO-REGN5054 specifically detected CD8+ T cells in lymphoid tissues of CD8-genetically humanized immunocompetent mice (VelociT mice) and discerned therapy-induced changes in CD8+ TILs in two models of response to a CD20xCD3 T-cell activating bispecific antibody (REGN1979, odronextamab).
Toxicology studies in cynomolgus monkeys showed no overt toxicity, and immuno-PET imaging in cynomolgus monkeys demonstrated dose-dependent clearance and specific targeting to lymphoid tissues. This work supports the clinical investigation of 89Zr-DFO-REGN5054 to monitor T-cell responses in patients undergoing cancer immunotherapy.
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