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High Throughput Combinatorial Formatting of PcrV Nanobodies for Efficient Potency Improvement

机译:PcrV纳米抗体的高通量组合格式化可有效提高效能

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摘要

Improving potencies through concomitant blockage of multiple epitopes and avid binding by fusing multiple (different) monovalent Nanobody building blocks via linker sequences into one multivalent polypeptide chain is an elegant alternative to affinity maturation. We explored a large and random formatting library of bivalent (combinations of two identical) and biparatopic (combinations of two different) Nanobodies for functional blockade of Pseudomonas aeruginosa PcrV. PcrV is an essential part of the P. aeruginosa type III secretion system (T3SS), and its oligomeric nature allows for multiple complex binding and blocking options. The library screening yielded a large number of promising biparatopic lead candidates, revealing significant (and non-trivial) preferences in terms of Nanobody building block and epitope bin combinations and orientations. Excellent potencies were confirmed upon further characterization in two different P. aeruginosa T3SS-mediated cytotoxicity assays. Three biparatopic Nanobodies were evaluated in a lethal mouse P. aeruginosa challenge pneumonia model, conferring 100% survival upon prophylactic administration and reducing lung P. aeruginosa burden by up to 2 logs. At very low doses, they protected the mice from P. aeruginosa infection-related changes in lung histology, myeloperoxidase production, and lung weight. Importantly, the most potent Nanobody still conferred protection after therapeutic administration up to 24 h post-infection. The concept of screening such formatting libraries for potency improvement is applicable to other targets and biological therapeutic platforms.
机译:通过同时封闭多个表位和通过将多个(不同的)单价纳米抗体构建基通过连接序列融合到一条多价多肽链中来提高结合力,是亲和力成熟的一种完美替代方案。我们探索了一个大型且随机的格式化库,用于铜绿假单胞菌PcrV的功能性封闭的二价(两个相同的组合)和双互补位(两个不同的组合)纳米抗体。 PcrV是铜绿假单胞菌III型分泌系统(T3SS)的重要组成部分,其低聚性质可实现多种复杂的结合和封闭选择。文库筛选产生了大量有前途的双对位先导候选物,显示出在纳米抗体构件和抗原决定簇的组合和方向方面的重大(且非平凡的)偏好。在两种不同的铜绿假单胞菌T3SS介导的细胞毒性测定中进一步表征后,证实了优异的效力。在致死性小鼠铜绿假单胞菌激发性肺炎模型中评估了三个双对位纳米抗体,在预防性给药后可提供100%的存活率,并最多可减少2个对数减少铜绿假单胞菌的负担。在非常低的剂量下,它们可以保护小鼠免受铜绿假单胞菌感染相关的肺组织学变化,髓过氧化物酶生成和肺重量的影响。重要的是,最有效的纳米抗体在感染后24小时内给予治疗后仍能提供保护。筛选用于提高效能的这种格式化文库的概念适用于其他靶标和生物治疗平台。

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