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艰难梭菌最小聚糖表位的多价展示模拟了较大聚糖的抗原特性。

Multivalent display of minimal Clostridium difficile glycan epitopes mimics antigenic properties of larger glycans.

作者信息

Broecker Felix, Hanske Jonas, Martin Christopher E, Baek Ju Yuel, Wahlbrink Annette, Wojcik Felix, Hartmann Laura, Rademacher Christoph, Anish Chakkumkal, Seeberger Peter H

机构信息

Department of Biomolecular Systems, Max Planck Institute of Colloids and Interfaces, Potsdam-Golm Science Park, 14476 Potsdam, Germany.

Department of Chemistry and Biochemistry, Freie Universität Berlin, 14195 Berlin, Germany.

出版信息

Nat Commun. 2016 Apr 19;7:11224. doi: 10.1038/ncomms11224.

Abstract

Synthetic cell-surface glycans are promising vaccine candidates against Clostridium difficile. The complexity of large, highly antigenic and immunogenic glycans is a synthetic challenge. Less complex antigens providing similar immune responses are desirable for vaccine development. Based on molecular-level glycan-antibody interaction analyses, we here demonstrate that the C. difficile surface polysaccharide-I (PS-I) can be resembled by multivalent display of minimal disaccharide epitopes on a synthetic scaffold that does not participate in binding. We show that antibody avidity as a measure of antigenicity increases by about five orders of magnitude when disaccharides are compared with constructs containing five disaccharides. The synthetic, pentavalent vaccine candidate containing a peptide T-cell epitope elicits weak but highly specific antibody responses to larger PS-I glycans in mice. This study highlights the potential of multivalently displaying small oligosaccharides to achieve antigenicity characteristic of larger glycans. The approach may result in more cost-efficient carbohydrate vaccines with reduced synthetic effort.

摘要

合成细胞表面聚糖是抗艰难梭菌的有前景的疫苗候选物。大型、高度抗原性和免疫原性聚糖的复杂性是一个合成挑战。对于疫苗开发而言,具有相似免疫反应的较不复杂抗原是可取的。基于分子水平的聚糖-抗体相互作用分析,我们在此证明,通过在不参与结合的合成支架上多价展示最小二糖表位,可以模拟艰难梭菌表面多糖-I(PS-I)。我们表明,当将二糖与含有五个二糖的构建体进行比较时,作为抗原性指标的抗体亲和力增加了约五个数量级。含有肽T细胞表位的合成五价疫苗候选物在小鼠中引发对更大的PS-I聚糖的微弱但高度特异性的抗体反应。这项研究突出了多价展示小寡糖以实现更大聚糖的抗原性特征的潜力。该方法可能会产生成本效益更高、合成工作量减少的碳水化合物疫苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9638/4838876/4d46793b0050/ncomms11224-f1.jpg

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