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Obtention and engineering of non-human primate (NHP) antibodies for therapeutics.

机译:非人类灵长类动物(NHP)抗体在治疗中的应用和改造。

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摘要

Recombinant antibodies are therapeutic molecules of choice regarding their efficacy, pharmacokinetics and tolerance - all the more if they are human. The efficacy of antibodies generally depends on their affinity for their antigens. The most straightforward approach to isolate human antibodies with high affinities is the construction and screening of human immune libraries, but Humans cannot be immunized with all antigens of interest, for ethical and practical reasons. We circumvented that difficulty by utilizing non-human primates (NHP) instead of Humans and, in the course of our different studies, we have obtained several antibody fragments with high or very high affinities (from 3 nM to 50 pM) and neutralizing properties. The framework regions (FR) - the regions most implicated in tolerance - of these NHP antibody fragments were shown to be very similar to FR encoded by human germline genes. In one case, in a process called "germline humanization" (or "super-humanization"), we have increased that level of similarity and managed to go even beyond the level observed for human antibodies, without any loss of affinity. Here, the methodological peculiarities of our approach, in comparison with immune libraries built from immunised Humans, and the rationales behind these peculiarities, will be reviewed. The isolation of NHP antibody fragments from immune libraries, followed by the "super-humanization" process, opens a new and highly efficient approach for the production of high-quality recombinant antibodies for therapeutic uses.
机译:就其功效,药代动力学和耐受性而言,重组抗体是首选的治疗分子-如果是人类,则更是如此。抗体的功效通常取决于其对抗原的亲和力。分离具有高亲和力的人类抗体的最直接方法是构建和筛选人类免疫文库,但是出于伦理和实践原因,不能使用所有目标抗原免疫人类。我们通过利用非人类灵长类动物(NHP)而非人类来规避了这一困难,并且在我们的不同研究过程中,我们获得了具有高或非常高亲和力(从3 nM至50 pM)和中和特性的抗体片段。这些NHP抗体片段的构架区(FR)-与耐受性最相关的区域显示与人种系基因编码的FR非常相似。在一种情况下,在称为“种系人源化”(或“超人源化”)的过程中,我们提高了相似度,并设法超越了人类抗体所观察到的水平,而没有任何亲和力损失。在这里,我们的方法的特点,与从被免疫的人建立的免疫文库相比,以及这些特点背后的原理,都将进行回顾。从免疫文库中分离NHP抗体片段,然后进行“超人源化”过程,为生产用于治疗用途的高质量重组抗体开辟了一种新的高效方法。

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