Hydroxyl-Terminated Polyethylene Glycol Evades Human Pre-existing Anti-polyethylene Glycol Antibodies

聚乙二醇 聚乙二醇化 抗体 PEG比率 化学 药理学 赋形剂 药代动力学 补体系统 不利影响 单克隆抗体 生物化学 溶血 免疫球蛋白G 药品 毒品携带者 血浆蛋白结合 脂质体 免疫学 效力 医学 分布(数学) 重组DNA
作者
Tianhao Ding,Jiaru Fu,Min Yang,Zui Zhang,Yinyu Ma,Ercan Wu,Zhiwei Guo,Shiqi Lin,Songli Wang,Xiaohua Liu,Weiping Wang,Bin Wang,Guanghui Li,Changyou Zhan
出处
期刊:ACS Nano [American Chemical Society]
标识
DOI:10.1021/acsnano.6c07672
摘要

Polyethylene glycol (PEG) has been extensively utilized in food, cosmetics, and pharmaceutical fields, especially in the realm of nanomedicines, where it serves as a pivotal excipient to prolong the nanoparticles' circulation half-life. Contrary to its historical perception as being nonimmunogenic, pre-existing anti-PEG antibodies have been widely detected in human even in individuals without prior exposure to PEGylated therapeutics and are associated with clinically relevant adverse effects of PEGylated nanomedicines including infusion reactions and hypersensitive reactions. Herein, we elucidated the prevalence and distribution characteristics of pre-existing anti-PEG antibodies in 1970 human blood samples and investigated its binding with PEG. The binding between pre-existing anti-PEG IgM and PEG was modulated by PEG terminal chemistry, with methoxy groups enhancing overall antibody-PEG interactions. Notably, methoxy is the only terminal configuration used in currently marketed PEGylated nanomedicines. In contrast, hydroxy PEG (OH-PEG) significantly evaded binding with pre-existing anti-PEG IgM among most clinical samples from three independent hospitals. Noteworthily, replacing methoxy PEG (MeO-PEG) with OH-PEG significantly attenuated complement activation of lipid nanoparticle (LNP) caused by pre-existing anti-PEG IgM, thereby markedly enhancing stability and reducing mRNA leakage in human serum. Additionally, LNP modified with OH-PEG exhibited reduced immunogenicity, which is crucial for repeated administrations. Collectively, this study elucidated the crucial role of OH-PEG in evading human pre-existing anti-PEG antibodies and discovered that the current preclinical studies inadequately simulated the biological effects of clinical pre-existing anti-PEG antibodies on such formulations through interspecies study, which had a profound impact on clinical translation of PEGylated nanomedicines.
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