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用于免疫正电子发射断层显像的锆-89和铜-64:从抗体生物偶联与放射性标记到分子成像

Zirconium 89 and Copper 64 for ImmunoPET: From Antibody Bioconjugation and Radiolabeling to Molecular Imaging.

作者信息

Badier Laure, Quelven Isabelle

机构信息

Toulouse NeuroImaging Center (ToNIC), INSERM/UPS UMR 1214, University Hospital of Toulouse-Purpan, CEDEX 3, 31024 Toulouse, France.

出版信息

Pharmaceutics. 2024 Jun 30;16(7):882. doi: 10.3390/pharmaceutics16070882.

Abstract

Immunotherapy has transformed cancer treatment. Nevertheless, given the heterogeneity of clinical efficacy, the multiplicity of treatment options available and the possibility of serious adverse effects, selecting the most effective treatment has become the greatest challenge. Molecular imaging offers an attractive way for this purpose. ImmunoPET provides specific imaging with positron emission tomography (PET) using monoclonal antibodies (mAb) or its fragments as vector. By combining the high targeting specificity of mAb and the sensitivity of PET technique, immunoPET could noninvasively and dynamically reveal tumor antigens expression and provide theranostic tools of several types of malignancies. Because of their slow kinetics, mAbs require radioelements defined by a consistent half-life. Zirconium 89 (Zr) and Copper 64 (Cu) are radiometals with half-lives suitable for mAb labeling. Radiolabeling with a radiometal requires the prior use of a bifunctional chelate agent (BFCA) to functionalize mAb for radiometal chelation, in a second step. There are a number of BFCA available and much research is focused on antibody functionalization techniques or on developing the optimum chelating agent depending the selected radiometal. In this manuscript, we present a critical account of radiochemical techniques with radionuclides Zr and Cu and their applications in preclinical and clinical immuno-PET imaging.

摘要

免疫疗法已经改变了癌症治疗方式。然而,鉴于临床疗效的异质性、可用治疗方案的多样性以及严重不良反应的可能性,选择最有效的治疗方法已成为最大挑战。分子成像为此提供了一种有吸引力的方法。免疫正电子发射断层显像(ImmunoPET)利用单克隆抗体(mAb)或其片段作为载体,通过正电子发射断层扫描(PET)提供特异性成像。通过结合mAb的高靶向特异性和PET技术的敏感性,ImmunoPET可以无创且动态地揭示肿瘤抗原表达,并为多种恶性肿瘤提供诊疗工具。由于其动力学缓慢,mAb需要由一致半衰期定义的放射性元素。锆89(Zr)和铜64(Cu)是半衰期适合mAb标记的放射性金属。用放射性金属进行放射性标记需要事先使用双功能螯合剂(BFCA),以便在第二步中使mAb功能化以进行放射性金属螯合。有多种BFCA可用,并且许多研究集中在抗体功能化技术上,或者根据所选放射性金属开发最佳螯合剂。在本手稿中,我们对使用放射性核素Zr和Cu的放射化学技术及其在临床前和临床免疫PET成像中的应用进行了批判性阐述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f0e/11279968/de15362ed85f/pharmaceutics-16-00882-g001.jpg

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