首页> 美国卫生研究院文献>Contrast Media Molecular Imaging >Exploiting the Concept of Multivalency with 68Ga- and 89Zr-Labelled Fusarinine C-Minigastrin Bioconjugates for Targeting CCK2R Expression
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Exploiting the Concept of Multivalency with 68Ga- and 89Zr-Labelled Fusarinine C-Minigastrin Bioconjugates for Targeting CCK2R Expression

机译:利用68Ga和89Zr标记的镰刀形C-最小胃泌素生物共轭物的多价概念来靶向CCK2R表达。

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摘要

Cholecystokinin-2 receptors (CCK2R) are overexpressed in a variety of malignant diseases and therefore have gained certain attention for peptide receptor radionuclide imaging. Among extensive approaches to improve pharmacokinetics and metabolic stability of minigastrin (MG) based radioligands, the concept of multivalency for enhanced tumour targeting has not been investigated extensively. We therefore utilized fusarinine C (FSC) as chelating scaffold for novel mono-, di-, and trimeric bioconjugates for targeting CCK2R expression. FSC-based imaging probes were radiolabelled with positron emitting radionuclides (gallium-68 and zirconium-89) and characterized in vitro (log⁡D, IC50, and cell uptake) and in vivo (metabolic stability in BALB/c mice, biodistribution profile, and microPET/CT imaging in A431-CCK2R/A431-mock tumour xenografted BALB/c nude mice). Improved targeting did not fully correlate with the grade of multimerization. The divalent probe showed higher receptor affinity and increased CCK2R mediated cell uptake while the trimer remained comparable to the monomer. In vivo biodistribution studies 1 h after administration of the 68Ga-labelled radioligands confirmed this trend, but imaging at late time point (24 h) with 89Zr-labelled counterparts showed a clearly enhanced imaging contrast of the trimeric probe compared to the mono- and dimer. Furthermore, in vivo stability studies showed a higher metabolic stability for multimeric probes compared to the monomeric bioconjugate. In summary, we could show that FSC can be utilized as suitable scaffold for novel mono- and multivalent imaging probes for CCK2R-related malignancies with partly improved targeting properties for multivalent conjugates. The increased tumour accumulation of the trimer 24 h postinjection (p.i.) can be explained by slower clearance and increased metabolic stability of multimeric conjugates.
机译:胆囊收缩素2受体(CCK2R)在多种恶性疾病中过表达,因此在肽受体放射性核素成像中得到了一定的关注。在改善基于小胃泌素(MG)的放射性配体的药代动力学和代谢稳定性的广泛方法中,尚未广泛研究增强肿瘤靶向的多价概念。因此,我们利用富沙瑞林C(FSC)作为螯合支架,用于靶向CCK2R表达的新型单,二和三聚体生物缀合物。基于FSC的成像探针用发射正电子的放射性核素(镓68和锆89)进行放射性标记,并在体外(log⁡D,IC50和细胞摄取)和体内(BALB / c小鼠的代谢稳定性,生物分布,和在A431-CCK2R / A431模拟肿瘤异种移植BALB / c裸鼠中的microPET / CT成像)。靶向性的提高与多聚化程度没有完全相关。二价探针显示更高的受体亲和力和增加的CCK2R介导的细胞摄取,而三聚体仍与单体相当。施用 68 Ga标记的放射性配体后1 h的体内生物分布研究证实了这种趋势,但在后期(24 h)用 89 Zr标记的对应物成像显示与单聚体和二聚体相比,三聚体探针的成像对比度明显增强。此外,体内稳定性研究表明,与单体生物缀合物相比,多聚体探针具有更高的代谢稳定性。总之,我们可以证明FSC可以用作CCK2R相关恶性肿瘤的新型单价和多价成像探针的合适支架,并具有针对多价结合物的部分改善的靶向特性。注射后24h内三聚体的肿瘤积累增加(p.i.)可以解释为多聚体结合物的清除较慢和代谢稳定性增强。

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