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单域抗体核成像可无创定量肿瘤浸润白细胞 LAG-3 表达并预测免疫检查点阻断的应答

英文原题:Single-Domain Antibody Nuclear Imaging Allows Noninvasive Quantification of LAG-3 Expression by Tumor-Infiltrating Leukocytes and Predicts Response of Immune Checkpoint Blockade.

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Single-Domain Antibody Nuclear Imaging Allows Noninvasive Quantification of LAG-3 Expression by Tumor-Infiltrating Leukocytes and Predicts Response of Immune Checkpoint Blockade.

PubMed 2021/03/12(内容时间) J Nucl Med Q1 · IF 9.6(JCR 2025)

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中文摘要

在注射放射性标记的单域抗体1小时后,对荷瘤小鼠进行SPECT/CT扫描。分别使用γ计数器和流式细胞术分离并评估小鼠的器官和肿瘤中放射性标记示踪剂的存在以及表达LAG-3的免疫细胞。向MC38荷瘤小鼠注射PD-1/LAG-3阻断抗体。

放射性标记的单域抗体在MC38、MO4和TC-1癌症模型中注射后仅1小时即可检测到TIL(肿瘤浸润淋巴细胞)上的LAG-3表达。该单域抗体示踪剂可视化了接受PD-1阻断抗体治疗的小鼠MC38肿瘤中TIL上LAG-3的代偿性上调。当PD-1阻断与LAG-3阻断联合使用时,观察到对肿瘤生长延迟的协同效应。

这些发现巩固了LAG-3作为下一代ICP的地位,并支持使用单域抗体作为工具,无创监测TILs中LAG-3表达的动态演变,这可用于预测治疗结果。

展开英文摘要原文

Recent advances in the field of immune-oncology led to the discovery of next-generation immune checkpoints (ICPs). Lymphocyte activation gene-3 (LAG-3), being the most widely studied among them, is being explored as a target for the treatment of cancer patients. Several antagonistic anti-LAG-3 antibodies are being developed and are prime candidates for clinical application.

Furthermore, validated therapies targeting cytotoxic T-lymphocyte-associated protein-4, programmed cell-death protein-1, or programmed cell-death ligand-1 showed that only subsets of patients respond. This finding highlights the need for better tools for patient selection and monitoring. The potential of molecular imaging to detect ICPs noninvasively in cancer is supported by several preclinical and clinical studies.

Here, we report on a single-domain antibody to evaluate whole-body LAG-3 expression in various syngeneic mouse cancer models using nuclear imaging. Methods: SPECT/CT scans of tumor-bearing mice were performed 1 h after injection with radiolabeled single-domain antibody. Organs and tumors of mice were isolated and evaluated for the presence of the radiolabeled tracer and LAG-3-expressing immune cells using a γ-counter and flow cytometry respectively. PD-1/LAG-3-blocking antibodies were injected in MC38-bearing mice.

Results: The radiolabeled single-domain antibody detected LAG-3 expression on tumor-infiltrating lymphocytes (TILs) as soon as 1 h after injection in MC38, MO4, and TC-1 cancer models. The single-domain antibody tracer visualized a compensatory upregulation of LAG-3 on TILs in MC38 tumors of mice treated with PD-1-blocking antibodies.

When PD-1 blockade was combined with LAG-3 blockade, a synergistic effect on tumor growth delay was observed. Conclusion: These findings consolidate LAG-3 as a next-generation ICP and support the use of single-domain antibodies as tools to noninvasively monitor the dynamic evolution of LAG-3 expression by TILs, which could be exploited to predict therapy outcome.

论文信息

作者
Lecocq Q、Awad RM、De Vlaeminck Y、de Mey W、Ertveldt T、Goyvaerts C、Raes G、Thielemans K
第一作者单位
Laboratory for Molecular and Cellular Therapy, Vrije Universiteit Brussel, Brussels, Belgium.Belgium
通讯作者单位
In Vivo Cellular and Molecular Imaging Laboratory, Vrije Universiteit Brussel, Brussels, Belgium; and nick.devoogdt@vub.be karine.breckpot@vub.be.Belgium
期刊
Journal of nuclear medicine : official publication, Society of Nuclear Medicine2021 Nov
原文标识
PubMed 33712537 · DOI 10.2967/jnumed.120.258871