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使用新型(64)Cu 标记的交叉桥连肽配体改善 uPAR 表达的 PET 成像:体外和体内比较研究。

Improved PET imaging of uPAR expression using new (64)Cu-labeled cross-bridged peptide ligands: comparative in vitro and in vivo studies.

机构信息

1. The Danish-Chinese Center for Proteases and Cancer; ; 2. Finsen Laboratory, Rigshospitalet & BRIC, Copenhagen Biocenter, Denmark; ; 3. Cluster for Molecular Imaging, Faculty of Health Sciences, University of Copenhagen, Copenhagen, Denmark; ; 4. Department of Clinical Physiology, Nuclear Medicine and PET, Center for Diagnostic Investigations, Rigshospitalet, Copenhagen, Denmark;

出版信息

Theranostics. 2013 Aug 3;3(9):618-32. doi: 10.7150/thno.6810. eCollection 2013.

Abstract

The correlation between uPAR expression, cancer cell invasion and metastases is now well-established and has prompted the development of a number of uPAR PET imaging agents, which could potentially identify cancer patients with invasive and metastatic lesions. In the present study, we synthesized and characterized two new cross-bridged (64)Cu-labeled peptide conjugates for PET imaging of uPAR and performed a head-to-head comparison with the corresponding and more conventionally used DOTA conjugate. Based on in-source laser-induced reduction of chelated Cu(II) to Cu(I), we now demonstrate the following ranking with respect to the chemical inertness of their complexed Cu ions: DOTA-AE105 << CB-TE2A-AE105 < CB-TE2A-PA-AE105, which is correlated to their corresponding demetallation rate. No penalty in the uPAR receptor binding affinity of the targeting peptide was encountered by conjugation to either of the macrobicyclic chelators (IC50 ~ 5-10 nM) and high yields and radiochemical purities (>95%) were achieved in all cases by incubation at 95ºC. In vivo, they display identical tumor uptake after 1h, but differ significantly after 22 hrs, where the DOTA-AE105 uptake remains surprisingly high. Importantly, the more stable of the new uPAR PET tracers, (64)Cu-CB-TE2A-PA-AE105, exhibits a significantly reduced liver uptake compared to (64)Cu-DOTA-AE105 as well as (64)Cu-CB-TE2A-AE105, (p<0.0001), emphasizing that our new in vitro stability measurements by mass spectrometry predicts in vivo stability in mice. Specificity of the best performing ligand, (64)Cu-CB-TE2A-PA-AE105 was finally confirmed in vivo using a non-binding (64)Cu-labeled peptide as control ((64)Cu-CB-TE2A-PA-AE105(mut)). This control PET-tracer revealed significantly reduced tumor uptake (p<0.0001), but identical hepatic uptake compared to its active counterpart ((64)Cu-CB-TE2A-PA-AE105) after 1h. In conclusion, our new approach using in-source laser-induced reduction of Cu(II)-chelated PET-ligands provides useful information, which are predictive for the tracer stability in vivo in mice. Furthermore, the increased stability of our new macrobicyclic (64)Cu-CB-TE2A-PA-AE105 PET ligand is paralleled by an excellent imaging contrast during non-invasive PET scanning of uPAR expression in preclinical mouse cancer models. The translational promises displayed by this PET-tracer for future clinical cancer patient management remains, however, to be investigated.

摘要

uPAR 表达、癌细胞侵袭和转移之间的相关性现已得到充分证实,并促使开发了许多 uPAR PET 成像剂,这些成像剂有可能识别出具有侵袭性和转移性病变的癌症患者。在本研究中,我们合成并表征了两种新的交联(64)Cu 标记肽缀合物,用于 uPAR 的 PET 成像,并与相应的、更常用的 DOTA 缀合物进行了直接比较。基于螯合的 Cu(II)在源内激光诱导下还原为 Cu(I),我们现在证明了它们络合的 Cu 离子的化学惰性如下:DOTA-AE105 << CB-TE2A-AE105 < CB-TE2A-PA-AE105,这与它们相应的脱金属率相关。通过连接到大环螯合剂之一,靶向肽的 uPAR 受体结合亲和力没有受到任何影响(IC50~5-10 nM),并且在所有情况下,通过在 95°C 孵育,都实现了高收率和放射化学纯度(>95%)。在体内,它们在 1 小时后显示出相同的肿瘤摄取,但在 22 小时后差异显著,其中 DOTA-AE105 的摄取仍然出人意料地高。重要的是,与(64)Cu-DOTA-AE105 和(64)Cu-CB-TE2A-AE105 相比,新型 uPAR PET 示踪剂中更稳定的(64)Cu-CB-TE2A-PA-AE105 表现出明显降低的肝脏摄取(p<0.0001),强调我们通过质谱法进行的新的体外稳定性测量可预测体内在小鼠中的稳定性。使用非结合的(64)Cu 标记肽作为对照((64)Cu-CB-TE2A-PA-AE105(mut)),最终在体内证实了最佳配体的特异性。这种对照 PET 示踪剂显示出明显降低的肿瘤摄取(p<0.0001),但在 1 小时后与活性对应物((64)Cu-CB-TE2A-PA-AE105)相比,肝脏摄取相同。总之,我们使用源内激光诱导还原 Cu(II)-螯合 PET 配体的新方法提供了有用的信息,这些信息可预测体内在小鼠中的示踪剂稳定性。此外,我们新型大环(64)Cu-CB-TE2A-PA-AE105 PET 配体的稳定性增加,与临床前小鼠癌症模型中 uPAR 表达的非侵入性 PET 扫描期间的优异成像对比度相匹配。然而,这种 PET 示踪剂在未来癌症患者管理中的转化前景仍有待研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdeb/3776215/b6c9bfa1f59f/thnov03p0618g01.jpg

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