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一种通过 PET 和[(64)Cu]Cu-NOTA-ch14.18/CHO 指导儿童肿瘤 GD2 靶向治疗的新方法

英文原题:A novel approach to guide GD2-targeted therapy in pediatric tumors by PET and [(64)Cu]Cu-NOTA-ch14.18/CHO.

PubMed 2024/01/20(内容时间) Theranostics Q1 · IF 14.9(JCR 2025)

研究概要

我们在此报告首批临床患者系列(n = 11),涉及不同儿童肿瘤,采用64 Cu-GD2 PET/MRI进行评估。

中文摘要

背景:肿瘤相关双唾液酸神经节苷脂GD2是神经母细胞瘤及其他儿童肿瘤(包括尤文肉瘤和骨肉瘤)中真正的免疫治疗靶点。靶向GD2的抗体在神经母细胞瘤中已被证明有效,表达靶向GD2的嵌合抗原受体(CAR)的T细胞以及自然杀伤T细胞(NKT)也正在兴起。然而,由于免疫组织化学方法效果不佳以及播散性疾病中的采样偏倚,肿瘤内和肿瘤间异质性的评估一直较为复杂。因此,一种用于在体内评估和可视化GD2表达的非侵入性方法备受关注,并可能有助于实现更合适的治疗分层。方法:最近,[64Cu]Cu-NOTA-ch14.18/CHO(64Cu-GD2),一种用于正电子发射断层扫描(PET)成像的放射性标记GD2抗体被开发出来。我们在此报告了我们在不同儿童肿瘤中采用64Cu-GD2 PET/MRI评估的首个临床患者系列(n = 11)。通过PET/MRI在注射后第1天(n = 11)以及第2天(n = 6)对标准化摄取值(SUV)进行半定量测量,评估肿瘤中GD2的表达及器官中的组织摄取。结果:在9例PET/MRI显示可疑肿瘤病灶的患者中,有8例至少一处转移灶显示64Cu-GD2摄取增加,其中4例测得高示踪剂摄取(SUV max > 10)。值得注意的是,在第1天即可获得足够的图像质量和高肿瘤与背景对比度。在64Cu-GD2阳性病灶中,骨、肌肉或肺部观察到极好的肿瘤与背景比(至少6:1),而脾、肝和肾中肿瘤与背景对比度较低。此外,我们展示了患者之间以及同一患者不同转移灶之间的广泛肿瘤异质性。剂量学评估显示全身剂量仅为0.03 mGy/MBq(范围0.02-0.04)。结论:64 Cu-GD2 PET/MRI能够无创评估GD2表达的个体异质性,这对我们目前针对抗GD2靶向治疗的患者选择、分层和免疫治疗应用方案的临床实践提出了挑战。

展开英文摘要原文

Background: The tumor-associated disialoganglioside GD2 is a bona fide immunotherapy target in neuroblastoma and other childhood tumors, including Ewing sarcoma and osteosarcoma. GD2-targeting antibodies proved to be effective in neuroblastoma and GD2-targeting chimeric antigen receptors (CAR)- expressing T cells as well as natural killer T cells (NKTs) are emerging. However, assessment of intra- and intertumoral heterogeneity has been complicated by ineffective immunohistochemistry as well as sampling bias in disseminated disease. Therefore, a non-invasive approach for the assessment and visualization of GD2 expression in-vivo is of upmost interest and might enable a more appropriate treatment stratification. Methods: Recently, [ 64 Cu]Cu-NOTA-ch14.18/CHO ( 64 Cu-GD2), a radiolabeled GD2-antibody for imaging with Positron-Emission-Tomography (PET) was developed. We here report our first clinical patients' series (n = 11) in different pediatric tumors assessed with 64 Cu-GD2 PET/MRI. GD2-expression in tumors and tissue uptake in organs was evaluated by semiquantitative measurements of standardized uptake values (SUV) with PET/MRI on day 1 p.i. (n = 11) as well as on day 2 p.i. (n = 6). Results: In 8 of 9 patients with suspicious tumor lesions on PET/MRI at least one metastasis showed an increased 64 Cu-GD2 uptake and a high tracer uptake (SUV max > 10) was measured in 4 of those 8 patients. Of note, sufficient image quality with high tumor to background contrast was readily achieved on day 1. In case of 64 Cu-GD2-positive lesions, an excellent tumor to background ratio (at least 6:1) was observed in bones, muscles or lungs, while lower tumor to background contrast was seen in the spleen, liver and kidneys. Furthermore, we demonstrated extensive tumor heterogeneity between patients as well as among different metastatic sites in individual patients. Dosimetry assessment revealed a whole-body dose of only 0.03 mGy/MBq (range 0.02-0.04). Conclusion: 64 Cu-GD2 PET/MRI enables the non-invasive assessment of individual heterogeneity of GD2 expression, which challenges our current clinical practice of patient selection, stratification and immunotherapy application scheme for treatment with anti-GD2 directed therapies.

论文信息

作者
Trautwein NF、Schwenck J、Seitz C、Seith F、Calderón E、von Beschwitz S、Singer S、Reischl G
单位
Department of Nuclear Medicine and Clinical Molecular Imaging, University of Tübingen.Germany
期刊
Theranostics2024
原文标识
PubMed 38323317 · DOI 10.7150/thno.92481