基于 IgG1 Fc 的治疗药物的生物物理差异与其细胞处理、与 FcRn 的相互作用和血浆半衰期有关。

Biophysical differences in IgG1 Fc-based therapeutics relate to their cellular handling, interaction with FcRn and plasma half-life.

机构信息

Department of Immunology, Oslo University Hospital, Rikshospitalet, 0372, Oslo, Norway.

Department of Pharmacology, Oslo University Hospital, University of Oslo, 0372, Oslo, Norway.

出版信息

Commun Biol. 2022 Aug 18;5(1):832. doi: 10.1038/s42003-022-03787-x.

Abstract

Antibody-based therapeutics (ABTs) are used to treat a range of diseases. Most ABTs are either full-length IgG1 antibodies or fusions between for instance antigen (Ag)-binding receptor domains and the IgG1 Fc fragment. Interestingly, their plasma half-life varies considerably, which may relate to how they engage the neonatal Fc receptor (FcRn). As such, there is a need for an in-depth understanding of how different features of ABTs affect FcRn-binding and transport behavior. Here, we report on how FcRn-engagement of the IgG1 Fc fragment compare to clinically relevant IgGs and receptor domain Fc fusions, binding to VEGF or TNF-α. The results reveal FcRn-dependent intracellular accumulation of the Fc, which is in line with shorter plasma half-life than that of full-length IgG1 in human FcRn-expressing mice. Receptor domain fusion to the Fc increases its half-life, but not to the extent of IgG1. This is mirrored by a reduced cellular recycling capacity of the Fc-fusions. In addition, binding of cognate Ag to ABTs show that complexes of similar size undergo cellular transport at different rates, which could be explained by the biophysical properties of each ABT. Thus, the study provides knowledge that should guide tailoring of ABTs regarding optimal cellular sorting and plasma half-life.

摘要

抗体药物(ABTs)用于治疗多种疾病。大多数 ABT 是全长 IgG1 抗体,或者是抗原(Ag)结合受体结构域与 IgG1 Fc 片段的融合体。有趣的是,它们的血浆半衰期差异很大,这可能与它们与新生 Fc 受体(FcRn)的结合方式有关。因此,需要深入了解 ABT 的不同特征如何影响 FcRn 结合和转运行为。在这里,我们报告了 IgG1 Fc 片段与临床相关的 IgG 和受体结构域 Fc 融合物与 VEGF 或 TNF-α的 FcRn 结合情况。结果显示 FcRn 依赖性的 Fc 细胞内积累,这与全长 IgG1 在人 FcRn 表达小鼠中的血浆半衰期较短相一致。受体结构域与 Fc 的融合增加了其半衰期,但不如 IgG1 那样显著。这反映了 Fc 融合物的细胞内再循环能力降低。此外,ABTs 与其同源抗原的结合表明,大小相似的复合物以不同的速率进行细胞内转运,这可以用每个 ABT 的生物物理特性来解释。因此,该研究提供了指导 ABT 关于最佳细胞分拣和血浆半衰期的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b763/9388496/2f79337c57ea/42003_2022_3787_Fig1_HTML.jpg

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