Specific imaging of CD8 + T-Cell dynamics with a nanobody radiotracer against human CD8β.

IF 8.6 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Timo W M De Groof, Yoline Lauwers, Tessa De Pauw, Mohit Saxena, Cécile Vincke, Jolien Van Craenenbroeck, Catherine Chapon, Roger Le Grand, Geert Raes, Thibaut Naninck, Jo A Van Ginderachter, Nick Devoogdt
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Abstract

Purpose: While immunotherapy has revolutionized the oncology field, variations in therapy responsiveness limit the broad applicability of these therapies. Diagnostic imaging of immune cell, and specifically CD8+ T cell, dynamics could allow early patient stratification and result in improved therapy efficacy and safety. In this study, we report the development of a nanobody-based immunotracer for non-invasive SPECT and PET imaging of human CD8+ T-cell dynamics.

Methods: Nanobodies targeting human CD8β were generated by llama immunizations and subsequent biopanning. The lead anti-human CD8β nanobody was characterized on binding, specificity, stability and toxicity. The lead nanobody was labeled with technetium-99m, gallium-68 and copper-64 for non-invasive imaging of human T-cell lymphomas and CD8+ T cells in human CD8 transgenic mice and non-human primates by SPECT/CT or PET/CT. Repeated imaging of CD8+ T cells in MC38 tumor-bearing mice allowed visualization of CD8+ T-cell dynamics.

Results: The nanobody-based immunotracer showed high affinity and specific binding to human CD8 without unwanted immune activation. CD8+ T cells were non-invasively visualized by SPECT and PET imaging in naïve and tumor-bearing mice and in naïve non-human primates with high sensitivity. The nanobody-based immunotracer showed enhanced specificity for CD8+ T cells and/or faster in vivo pharmacokinetics compared to previous human CD8-targeting immunotracers, allowing us to follow human CD8+ T-cell dynamics already at early timepoints.

Conclusion: This study describes the development of a more specific human CD8+ T-cell-targeting immunotracer, allowing follow-up of immunotherapy responses by non-invasive imaging of human CD8+ T-cell dynamics.

Abstract Image

利用针对人类 CD8β 的纳米抗体放射性示踪剂对 CD8 + T 细胞动态进行特异性成像。
目的:虽然免疫疗法给肿瘤领域带来了革命性的变化,但治疗反应性的差异限制了这些疗法的广泛适用性。对免疫细胞,特别是 CD8+ T 细胞动态的诊断成像可以对患者进行早期分层,从而提高疗效和安全性。在这项研究中,我们报告了一种基于纳米抗体的免疫示踪剂的开发情况,该示踪剂可用于对人类 CD8+ T 细胞动态进行非侵入性 SPECT 和 PET 成像:方法:通过骆驼免疫和随后的生物制备产生了靶向人 CD8β 的纳米抗体。对先导抗人 CD8β 纳米抗体的结合性、特异性、稳定性和毒性进行了表征。用锝-99m、镓-68 和铜-64 标记先导纳米抗体,通过 SPECT/CT 或 PET/CT 对人类 CD8 转基因小鼠和非人灵长类的人类 T 细胞淋巴瘤和 CD8+ T 细胞进行无创成像。对携带 MC38 肿瘤的小鼠的 CD8+ T 细胞进行重复成像,可以观察 CD8+ T 细胞的动态变化:结果:基于纳米抗体的免疫示踪剂显示出与人类 CD8 的高亲和力和特异性结合,不会产生不必要的免疫激活。通过SPECT和PET成像技术,CD8+ T细胞可在天真小鼠、肿瘤小鼠和天真非人灵长类动物体内进行无创可视化,且灵敏度高。与以前的人类 CD8 靶向免疫示踪剂相比,基于纳米抗体的免疫示踪剂显示出更强的 CD8+ T 细胞特异性和/或更快的体内药代动力学,使我们能够在早期时间点就跟踪人类 CD8+ T 细胞的动态:本研究描述了一种更具特异性的人类 CD8+ T 细胞靶向免疫示踪剂的开发过程,它可以通过对人类 CD8+ T 细胞动态进行非侵入性成像来跟踪免疫治疗反应。
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来源期刊
CiteScore
15.60
自引率
9.90%
发文量
392
审稿时长
3 months
期刊介绍: The European Journal of Nuclear Medicine and Molecular Imaging serves as a platform for the exchange of clinical and scientific information within nuclear medicine and related professions. It welcomes international submissions from professionals involved in the functional, metabolic, and molecular investigation of diseases. The journal's coverage spans physics, dosimetry, radiation biology, radiochemistry, and pharmacy, providing high-quality peer review by experts in the field. Known for highly cited and downloaded articles, it ensures global visibility for research work and is part of the EJNMMI journal family.
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