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通过与树突状细胞靶向性Fab片段进行位点特异性偶联来共同递送抗原和佐剂,可增强T细胞反应。

Co-delivery of antigen and adjuvant by site-specific conjugation to dendritic cell-targeted Fab fragments potentiates T cell responses.

作者信息

Wijfjes Zacharias, Ramos Tomillero Iván, Le Gall Camille M, van Dinther Eric A W, Turlings Frederique, Classens René, Manna Saikat, van Dalen Duco, Peters Ruud J R W, Schouren Kayleigh, Fennemann Felix L, Hagemans Iris M, van Dalen Floris J, van der Schoot Johan M S, Figdor Carl G, Esser-Kahn Aaron, Scheeren Ferenc A, Verdoes Martijn

机构信息

Department of Medical BioSciences, Radboud University Medical Center Nijmegen The Netherlands.

Institute for Chemical Immunology Nijmegen The Netherlands.

出版信息

RSC Chem Biol. 2025 May 5. doi: 10.1039/d5cb00014a.

Abstract

The aim of therapeutic cancer vaccines is to induce tumor-specific cellular immune responses. This requires tumor antigens to be efficiently processed and presented by antigen-presenting cells, in particular dendritic cells (DCs). In addition, DCs require maturation to upregulate the surface expression and secretion of T cell costimulatory molecules, which is achieved by co-administration of adjuvants in vaccines. Peptide-based antigen vaccination is an attractive strategy due to the established biocompatibility of peptides as well as the dosing control. To enhance the efficacy of peptide-based vaccines, antigens can be targeted to DCs. Antigen-adjuvant conjugates are known to enhance T cell activation by ensuring DC maturation upon antigen delivery. In this study, we aim to combine these two approaches in a single molecule, and present a DC-targeted antibody fragment-antigen-adjuvant (AAA)-conjugate. We generate the AAA-conjugate through a combination of site-specific sortase-mediated chemoenzymatic ligation and click chemistry. T cell activation assays show enhanced efficacy of the AAA-conjugate compared to non-adjuvanted control conjugates. The performance of the AAA-conjugate was suboptimal, which we hypothesize to be a consequence of the hydrophobic character of the conjugate. efficacy was rescued by co-administration of antibody fragment-antigen conjugates and antibody fragment-adjuvant conjugates, in which the antigen and adjuvant were separatedly delivered using two different DC-targeting molecules. In conclusion, this study provides a proof-of-concept for effective antigen-specific T cell activation by targeted delivery of both antigen and adjuvant to DCs in a single or separate molecule using site-specific protein engineering.

摘要

治疗性癌症疫苗的目的是诱导肿瘤特异性细胞免疫反应。这需要肿瘤抗原被抗原呈递细胞,特别是树突状细胞(DCs)有效处理和呈递。此外,DCs需要成熟以上调T细胞共刺激分子的表面表达和分泌,这通过在疫苗中共同施用佐剂来实现。基于肽的抗原疫苗接种是一种有吸引力的策略,因为肽具有已确立的生物相容性以及剂量控制。为了提高基于肽的疫苗的功效,可以将抗原靶向DCs。已知抗原-佐剂缀合物通过在递送抗原时确保DC成熟来增强T细胞活化。在本研究中,我们旨在将这两种方法结合在一个分子中,并展示一种靶向DC的抗体片段-抗原-佐剂(AAA)缀合物。我们通过位点特异性分选酶介导的化学酶连接和点击化学的组合生成AAA缀合物。T细胞活化分析表明,与无佐剂的对照缀合物相比,AAA缀合物的功效增强。AAA缀合物的性能次优,我们推测这是缀合物疏水性的结果。通过共同施用抗体片段-抗原缀合物和抗体片段-佐剂缀合物挽救了功效,其中抗原和佐剂使用两种不同的靶向DC的分子分别递送。总之,本研究通过使用位点特异性蛋白质工程将抗原和佐剂以单个或单独分子靶向递送至DC,为有效的抗原特异性T细胞活化提供了概念验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8508/12135578/aafe13872528/d5cb00014a-f1.jpg

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