Department of Chemical Engineering, University of Texas at Austin, Austin, Texas, USA; email:
Department of Biomedical Engineering, University of Texas at Austin, Austin, Texas, USA.
Annu Rev Biomed Eng. 2022 Jun 6;24:249-274. doi: 10.1146/annurev-bioeng-082721-024500. Epub 2022 Apr 1.
Interactions between the crystallizable fragment (Fc) domain of antibodies and a plethora of cellular Fc receptors (FcRs) or soluble proteins form a critical link between humoral and innate immunity. In particular, the immunoglobulin G Fc domain is critical for the clearance of target cells by processes that include () cytotoxicity, phagocytosis, or complement lysis; () modulation of inflammation; () antigen presentation; () antibody-mediated receptor clustering; and () cytokine release. More than 30 Fc-engineered antibodies aimed primarily at tailoring these effects for optimal therapeutic outcomes are in clinical evaluation or have already been approved. Nonetheless, our understanding of how FcR engagement impacts various immune cell phenotypes is still largely incomplete. Recent insights into FcR biology coupled with advances in Fc:FcR structural analysis, Fc engineering, and mouse models that recapitulate human biology are helping to fill in existing knowledge gaps. These advances will provide a blueprint on how to fine-tune the Fc domain to achieve optimal therapeutic efficacy.
抗体的可结晶片段 (Fc) 域与大量细胞 Fc 受体 (FcR) 或可溶性蛋白之间的相互作用在体液免疫和先天免疫之间形成了一个关键联系。特别是,免疫球蛋白 G 的 Fc 结构域对于通过包括以下作用来清除靶细胞至关重要:()细胞毒性、吞噬作用或补体溶解;()炎症调节;()抗原呈递;()抗体介导的受体聚类;和()细胞因子释放。目前有 30 多种针对这些作用的 Fc 工程抗体正在进行临床评估或已经获得批准,旨在针对最佳治疗效果进行定制。尽管如此,我们对于 FcR 结合如何影响各种免疫细胞表型的理解仍然很大程度上不完整。最近对于 FcR 生物学的深入了解,以及 Fc:FcR 结构分析、Fc 工程和模拟人类生物学的小鼠模型的进展,正在帮助填补现有知识空白。这些进展将为如何微调 Fc 结构域以实现最佳治疗效果提供蓝图。