[18F]AlF-NOTA-PCP2:胶质母细胞瘤异种移植物中用于增强 PD-L1 异质性成像的新型 PET/CT 示踪剂以及与[18F]AlF-NOTA-WL12 的比较分析。

IF 8.6 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING European Journal of Nuclear Medicine and Molecular Imaging Pub Date : 2024-09-01 Epub Date: 2024-05-07 DOI:10.1007/s00259-024-06743-5
Yong Wang, Yang Zhang, Yunhao Chen, Shijie Wang, Wei Liu, Zhiguo Liu, Man Hu
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引用次数: 0

摘要

目的:PD-L1抗体在胶质母细胞瘤(GBM)中的疗效不尽如人意,主要是由于PD-L1表达的时间和空间异质性。分子成像可以加深对肿瘤免疫微环境的了解并指导免疫疗法。然而,能够有效观察PD-L1异质性的高灵敏度成像试剂十分有限。方法:[18F]AlF-NOTA-PCP2 被高纯度合成,其与 PD-L1 的亲和力通过表面等离子体共振(SPR)和细胞结合实验进行了表征。在体外使用各种细胞系评估了其对 PD-L1 的特异性,在体内使用 NOD/SCID 小鼠的 GBM 异种移植模型评估了其对 PD-L1 的特异性。PET/CT 成像评估了示踪剂的生物分布、药代动力学以及量化肿瘤空间 PD-L1 表达异质性的能力。对[18F]AlF-NOTA-PCP2和[18F]AlF-NOTA-WL12进行了重点比较分析,研究了它们在GBM异种移植物中的结合亲和力、生物分布、药代动力学和成像效果。此外,人体辐射剂量估算比较了两种示踪剂的安全性:结果:[18F]AlF-NOTA-PCP2的放射化学纯度很高(> 95%),与PD-L1的亲和力很强,与[18F]AlF-NOTA-WL12相当。体外和体内研究证实了它对 PD-L1 的特异性,在表达 PD-L1 的细胞和肿瘤中摄取量增加。毒理学特征表明,血清生化指标或主要器官组织未出现明显异常。显微 PET/CT 成像显示,[18F]AlF-NOTA-PCP2 能有效显示 PD-L1 表达水平和 GBM 异种移植物的空间异质性。比较研究显示,与[18F]AlF-NOTA-WL12相比,[18F]AlF-NOTA-PCP2具有更好的药代动力学特性,包括更高的瘤血比、更低的非特异性肝摄取以及更少的辐射暴露:结论:[18F]AlF-NOTA-PCP2 是一种灵敏度极高的 PET/CT 示踪剂,善于无创、准确地量化 PD-L1 在肿瘤中的表达及其空间异质性,尤其是在 GBM 中。它具有良好的药代动力学特性、安全性以及与 PD-L1 的高亲和力,这些都彰显了它在提高癌症免疫疗法的精确性和指导个体化治疗策略方面的潜力。虽然前景广阔,但其临床应用,尤其是脑成像方面的应用,还需要在临床试验中进一步验证。
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[18F]AlF-NOTA-PCP2: a novel PET/CT tracer for enhanced PD-L1 heterogeneity imaging and comparative analysis with [18F]AlF-NOTA-WL12 in glioblastoma xenografts.

Purpose: The unsatisfactory efficacy of PD-L1 antibodies in glioblastoma (GBM) is largely due to the temporal and spatial heterogeneity of PD-L1 expression. Molecular imaging can enhance understanding of the tumor immune microenvironment and guide immunotherapy. However, highly sensitive imaging agents capable of effectively visualizing PD-L1 heterogeneity are limited. This study introduces a novel PET tracer, offering improved imaging of PD-L1 heterogeneity in GBM xenografts, with a comparative analysis to [18F]AlF-NOTA-WL12.

Methods: [18F]AlF-NOTA-PCP2 was synthesized with high purity and its affinity for PD-L1 was characterized using surface plasmon resonance (SPR) and cell binding assays. Its specificity for PD-L1 was evaluated both in vitro using various cell lines and in vivo with GBM xenograft models in NOD/SCID mice. PET/CT imaging was conducted to evaluate the tracer's biodistribution, pharmacokinetics, and ability to quantify tumoral spatial heterogeneity of PD-L1 expression. A focused comparative analysis between [18F]AlF-NOTA-PCP2 and [18F]AlF-NOTA-WL12 was conducted, examining binding affinity, biodistribution, pharmacokinetics, and imaging effectiveness in GBM xenografts. Additionally, human radiation dosimetry estimates compared the safety profiles of both tracers.

Results: [18F]AlF-NOTA-PCP2 demonstrated high radiochemical purity (> 95%) and a strong affinity for PD-L1, comparable to [18F]AlF-NOTA-WL12. In vitro and in vivo studies confirmed its specificity for PD-L1, with increased uptake in PD-L1 expressing cells and tumors. Toxicological profiles indicated no significant abnormalities in serum biochemical indicators or major organ tissues. MicroPET/CT imaging showed [18F]AlF-NOTA-PCP2's effectiveness in visualizing PD-L1 expression levels and spatial heterogeneity in GBM xenografts. Comparative studies revealed [18F]AlF-NOTA-PCP2's improved pharmacokinetic properties, including higher tumor-to-blood ratios and lower nonspecific liver uptake, as well as reduced radiation exposure compared to [18F]AlF-NOTA-WL12.

Conclusion: [18F]AlF-NOTA-PCP2 distinguishes itself as an exceptionally sensitive PET/CT tracer, adept at non-invasively and accurately quantifying PD-L1 expression and its spatial heterogeneity in tumors, especially in GBM. Its favorable pharmacokinetic properties, safety profile, and high affinity for PD-L1 highlight its potential for enhancing the precision of cancer immunotherapy and guiding individualized treatment strategies. While promising, its clinical translation, especially in brain imaging, necessitates further validation in clinical trials.

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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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