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基于半胱氨酸选择性抗体修饰的体内前靶向与 IEDDA 生物正交连接用于点击化学。

In Vivo Pretargeting Based on Cysteine-Selective Antibody Modification with IEDDA Bioorthogonal Handles for Click Chemistry.

机构信息

Center for Nuclear Sciences and Technologies (C2TN), Instituto Superior Técnico, Universidade de Lisboa, Estrada Nacional 10, 2695-066 Bobadela LRS, Portugal.

Instituto de Medicina Molecular João Lobo Antunes (iMM-JLA), Faculdade de Medicina, Universidade de Lisboa, Avenida Professor Egas Moniz, 1649-028 Lisboa, Portugal.

出版信息

Bioconjug Chem. 2021 Jan 20;32(1):121-132. doi: 10.1021/acs.bioconjchem.0c00551. Epub 2020 Dec 9.

Abstract

Pretargeted imaging has emerged as an effective multistep strategy aiming to improve imaging contrast and reduce patient radiation exposure through decoupling of the radioactivity from the targeting vector. The inverse electron-demand Diels-Alder (IEDDA) reaction between a -cyclooctene (TCO)-conjugated antibody and a labeled tetrazine holds great promise for pretargeted imaging applications due to its bioorthogonality, rapid kinetics under mild conditions, and formation of stable products. Herein, we describe the use of functionalized carbonylacrylic reagents for site-specific incorporation of TCO onto a human epidermal growth factor receptor 2 (HER2) antibody (THIOMAB) containing an engineered unpaired cysteine residue, generating homogeneous conjugates. Precise labeling of THIOMAB-TCO with a fluorescent or radiolabeled tetrazine revealed the potential of the TCO-functionalized antibody for imaging the HER2 after pretargeting in a cellular context in a HER2 positive breast cancer cell line. Control studies with MDA-MD-231 cells, which do not express HER2, further confirmed the target specificity of the modified antibody. THIOMAB-TCO was also evaluated in vivo after pretargeting and subsequent administration of an In-labeled tetrazine. Biodistribution studies in breast cancer tumor-bearing mice showed a significant activity accumulation on HER2 tumors, which was 2.6-fold higher than in HER2 tumors. Additionally, biodistribution studies with THIOMAB without the TCO handle also resulted in a decreased uptake of In-DOTA-Tz on HER2 tumors. Altogether, these results clearly indicate the occurrence of the click reaction at the tumor site, i.e., pretargeting of SK-BR-3 HER2-expressing cells with THIOMAB-TCO and reaction through the TCO moiety present in the antibody. The combined advantages of site-selectivity and stability of TCO tagged-antibodies could allow application of biorthogonal chemistry strategies for pretargeting imaging with minimal side-reactions and background.

摘要

靶向成像已经成为一种有效的多步骤策略,旨在通过使放射性与靶向载体解耦来提高成像对比度并降低患者的辐射暴露。-环辛烯(TCO)-缀合抗体与标记的四嗪之间的逆电子需求 Diels-Alder(IEDDA)反应由于其生物正交性、在温和条件下的快速动力学以及形成稳定产物,在靶向成像应用中具有很大的前景。在此,我们描述了使用功能化的羰基丙烯酰基试剂在含有工程化未配对半胱氨酸残基的人表皮生长因子受体 2(HER2)抗体(THIOMAB)上进行 TCO 的定点掺入,生成均一的缀合物。用荧光或放射性标记的四嗪对 THIOMAB-TCO 进行精确标记,揭示了 TCO 功能化抗体在 HER2 阳性乳腺癌细胞系中进行靶向后成像 HER2 的潜力。用不表达 HER2 的 MDA-MD-231 细胞进行的对照研究进一步证实了修饰抗体的靶向特异性。THIOMAB-TCO 还在进行预靶向和随后给予 In 标记的四嗪后在体内进行了评估。在荷乳腺癌肿瘤的小鼠中进行的生物分布研究表明,在 HER2 肿瘤上的活性积累显著,比 HER2 肿瘤高 2.6 倍。此外,没有 TCO 手柄的 THIOMAB 的生物分布研究也导致 In-DOTA-Tz 在 HER2 肿瘤上的摄取减少。总之,这些结果清楚地表明在肿瘤部位发生点击反应,即 THIOMAB-TCO 对 SK-BR-3 HER2 表达细胞进行预靶向,以及通过抗体中存在的 TCO 部分进行反应。TCO 标记抗体的位点选择性和稳定性的综合优势可以允许应用双正交化学策略进行靶向成像,从而最小化副反应和背景。

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