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An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence

机译:一种工程化的人FC域,其表现得像超长循环持久性的pH-拨动开关

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The pharmacokinetic properties of antibodies are largely dictated by the pH-dependent binding of the IgG fragment crystallizable (Fc) domain to the human neonatal Fc receptor (hFcRn). Engineered Fc domains that confer a longer circulation half-life by virtue of more favorable pH-dependent binding to hFcRn are of great therapeutic interest. Here we developed a pH Toggle switch Fc variant containing the L309D/Q311H/N434S (DHS) substitutions, which exhibits markedly improved pharmacokinetics relative to both native IgG1 and widely used half-life extension variants, both in conventional hFcRn transgenic mice and in new knock-in mouse strains. engineered specifically to recapitulate all the key processes relevant to human antibody persistence in circulation, namely: (i) physiological expression of hFcRn, (ii) the impact of hFcγRs on antibody clearance and (iii) the role of competing endogenous IgG. DHS-IgG retains intact effector functions, which are important for the clearance of target pathogenic cells and also has favorable developability.
机译:抗体的药代动力学性质主要由IgG片段结晶(Fc)结构域对人新生Fc受体(Hfcrn)的pH依赖性结合。通过更有利的pH依赖性与HFCRN的依赖性对HFCRN具有更有利的pH依赖性结合的工程FC结构域具有很大的治疗兴趣。在这里,我们开发了一种pH切换开关Fc变体,其包含L309D / Q311H / N434S(DHS)取代,其表现出相对于天然IgG1和广泛使用的半衰期延伸变体,均在常规HFCRN转基因小鼠和新敲击中展示显着改善的药代动力学-in鼠标菌株。专程专门化以重新承载与人抗体持久性相关的所有关键过程,即:(i)HFCRN的生理表达,(ii)HFCγRS对抗体清除的影响和(iii)竞争内源性IgG的作用。 DHS-IgG保留完整的效应功能,这对于目标致病细胞的间隙很重要,并且还具有良好的显影性。

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