Plug-and-play nucleic acid-mediated multimerization of biparatopic nanobodies for molecular imaging

IF 6.5 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Molecular Therapy. Nucleic Acids Pub Date : 2024-08-15 DOI:10.1016/j.omtn.2024.102305
Laura Teodori, Sarah K. Ochoa, Marjan Omer, Veronica L. Andersen, Pernille Bech, Junyi Su, Jessica Bridoux, Jesper S. Nielsen, Mathias B. Bertelsen, Sophie Hernot, Kurt V. Gothelf, Jørgen Kjems
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Abstract

In cancer molecular imaging, selecting binders with high specificity and affinity for biomarkers is paramount for achieving high-contrast imaging within clinical time frames. Nanobodies have emerged as potent candidates, surpassing antibodies in pre-clinical imaging due to their convenient production, rapid renal clearance, and deeper tissue penetration. Multimerization of nanobodies is a popular strategy to enhance their affinity and pharmacokinetics; however, traditional methods are laborious and may yield heterogeneous products. In this study, we employ a Holliday junction (HJ)-like nucleic acid-based scaffold to create homogeneous nanostructures with precise multivalent and multiparatopic nanobody displays. The plug-and-play assembly allowed the screening of several nanobody multimer configurations for the detection of the breast cancer biomarker, human epidermal growth factor receptor 2 (HER2). studies demonstrated significant improvements in binding avidity, particularly with the biparatopic construct exhibiting high sensitivity, surpassing that of traditional antibody-based cell binding. Furthermore, our HJ platform allowed for adaptation from fluorescence-based to nuclear imaging, as demonstrated in xenografted mice, thereby allowing for future applications. This work highlights the potential of nucleic acid-mediated multimerization to markedly enhance nanobody binding, by exploring synergistic combinations and offering versatility for both diagnostics and cancer molecular imaging with prospects for future theranostic applications.
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即插即用的核酸介导的双原子纳米抗体多聚化,用于分子成像
在癌症分子成像中,选择对生物标记物具有高特异性和亲和力的粘合剂对于在临床时限内实现高对比度成像至关重要。纳米抗体因其生产方便、肾脏清除快、组织穿透更深等优点,已成为临床前成像中超越抗体的有效候选药物。纳米抗体的多聚化是增强其亲和力和药代动力学的常用策略;然而,传统方法费时费力,而且可能产生异构产物。在这项研究中,我们采用了一种类似霍利迪接合点(HJ)的核酸基支架来创建具有精确多价和多异位纳米抗体显示的同质纳米结构。这种即插即用的组装方式可以筛选出几种纳米抗体多聚体配置,用于检测乳腺癌生物标志物人类表皮生长因子受体 2(HER2)。研究表明,结合热度有了显著提高,特别是双配位构建体表现出了高灵敏度,超过了传统的基于抗体的细胞结合。此外,正如在异种移植小鼠中展示的那样,我们的 HJ 平台允许从基于荧光到核成像的调整,从而为未来的应用提供了可能。这项工作强调了核酸介导的多聚化在显著增强纳米抗体结合方面的潜力,通过探索协同组合,为诊断和癌症分子成像提供了多功能性,为未来的治疗学应用提供了前景。
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来源期刊
Molecular Therapy. Nucleic Acids
Molecular Therapy. Nucleic Acids MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
15.40
自引率
1.10%
发文量
336
审稿时长
20 weeks
期刊介绍: Molecular Therapy Nucleic Acids is an international, open-access journal that publishes high-quality research in nucleic-acid-based therapeutics to treat and correct genetic and acquired diseases. It is the official journal of the American Society of Gene & Cell Therapy and is built upon the success of Molecular Therapy. The journal focuses on gene- and oligonucleotide-based therapies and publishes peer-reviewed research, reviews, and commentaries. Its impact factor for 2022 is 8.8. The subject areas covered include the development of therapeutics based on nucleic acids and their derivatives, vector development for RNA-based therapeutics delivery, utilization of gene-modifying agents like Zn finger nucleases and triplex-forming oligonucleotides, pre-clinical target validation, safety and efficacy studies, and clinical trials.
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