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Probing the binding mechanism and affinity of tanezumab, a recombinant humanized anti-NGF monoclonal antibody, using a repertoire of biosensors

机译:使用生物传感器库探索重组人源化抗NGF单克隆抗体tanezumab的结合机制和亲和力

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摘要

We describe the use of four complementary biosensors (Biacore 3000, Octet QK, ProteOn XPR36, and KinExA 3000) in characterizing the kinetics of human nerve growth factor (NGF) binding to a humanized NGF-neutralizing monoclonal antibody (tanezumab, formerly known as RN624). Tanezumab is a clinical candidate as a therapy for chronic pain. Our measurements were consistent with the NGF/tanezumab binding affinity being tighter than 10 pM due to the formation of an extremely stable complex that had an estimated half-life exceeding 100 h, which was beyond the resolution of any of our methods. The system was particularly challenging to study because NGF is an obligate homodimer, and we describe various assay orientations and immobilization methods that were used to minimize avidity in our experiments while keeping NGF in as native a state as possible. We also explored the interactions of NGF with its natural receptors, TrkA and P75, and how tanezumab blocks them. The Biacore blocking assay that we designed was used to quantify the potency of tanezumab and is more precise and reproducible than the currently available cell-based functional assays.
机译:我们描述了使用四个互补的生物传感器(Biacore 3000,Octet QK,ProteOn XPR36和KinExA 3000)表征人神经生长因子(NGF)与人源化NGF中和性单克隆抗体(tanezumab,以前称为RN624)结合的动力学)。 Tanezumab是治疗慢性疼痛的临床候选药物。我们的测量结果与NGF / tanezumab的结合亲和力紧密于10 pM一致,这是因为形成了极其稳定的复合物,其估计半衰期超过100 h,这超出了我们任何方法的分辨率。由于NGF是专性的同源二聚体,因此该系统的研究特别具有挑战性,我们描述了各种测定法的方向和固定化方法,这些方法和固定化方法可最大程度地减少实验中的亲和力,同时将NGF保持在尽可能自然的状态。我们还探讨了NGF及其天然受体TrkA和P75的相互作用,以及tanezumab如何阻断它们。我们设计的Biacore阻断测定法用于定量tanezumab的效价,并且比目前可用的基于细胞的功能测定法更精确和可重现。

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