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Structure-based programming of lymph-node targeting in molecular vaccines

机译:基于结构的分子疫苗淋巴结靶向编程

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摘要

In cancer patients, visual identification of sentinel lymph nodes (LNs) is achieved by the injection of dyes that bind avidly to endogenous albumin, targeting these compounds to LNs, where they are efficiently filtered by resident phagocytes1, 2. Here we translate this ‘albumin hitchhiking’ approach to molecular vaccines, through the synthesis of amphiphiles (amph-vaccines) comprising an antigen or adjuvant cargo linked to a lipophilic albumin-binding tail by a solubility-promoting polar polymer chain. Administration of structurally optimized CpG-DNA/peptide amph-vaccines in mice resulted in marked increases in LN accumulation and decreased systemic dissemination relative to their parent compounds, leading to 30-fold increases in T-cell priming and enhanced anti-tumour efficacy while greatly reducing systemic toxicity. Amph-vaccines provide a simple, broadly applicable strategy to simultaneously increase the potency and safety of subunit vaccines.
机译:在癌症患者中,通过注射与内源性白蛋白紧密结合的染料,将这些化合物靶向LNs,可以通过肉眼可见的前哨淋巴结(LNs)的视觉识别,在那里它们被驻留的吞噬细胞1、2高效过滤。分子疫苗的“搭便车”方法,是通过两亲物(安培疫苗)的合成,该两亲物包含通过促进溶解性的极性聚合物链与亲脂性白蛋白结合尾巴相连的抗原或佐剂。相对于其母体化合物,在小鼠中施用结构优化的CpG-DNA /肽类两性疫苗可导致LN积累显着增加,并且系统散布减少,从而导致T细胞启动增强30倍,并增强了抗肿瘤功效,同时降低全身毒性。安非他明疫苗提供了一种简单,可广泛应用的策略,可同时提高亚单位疫苗的效力和安全性。

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