结核分枝杆菌
抗体
微生物学
肺结核
免疫学
病毒学
医学
生物
病理
作者
Edward B. Irvine,Angel Nikolov,Mehak Zahoor Khan,Joshua M. Peters,Richard Lu,Jaimie Sixsmith,Aaron S. Wallace,Esther van Woudenbergh,Sally Shin,W Karpinski,Jeff C. Hsiao,Arturo Casadevall,Bryan D. Bryson,Lisa A. Cavacini,Patricia S. Grace,Galit Alter,Sarah M. Fortune
标识
DOI:10.1038/s41564-024-01777-9
摘要
Mounting evidence indicates that antibodies can contribute towards control of tuberculosis (TB). However, the underlying mechanisms of humoral immune protection and whether antibodies can be exploited in therapeutic strategies to combat TB are relatively understudied. Here we engineered the receptor-binding Fc (fragment crystallizable) region of an antibody recognizing the Mycobacterium tuberculosis (Mtb) capsule, to define antibody Fc-mediated mechanism(s) of Mtb restriction. We generated 52 Fc variants that either promote or inhibit specific antibody effector functions, rationally building antibodies with enhanced capacity to promote Mtb restriction in a human whole-blood model of infection. While there is likely no singular Fc profile that universally drives control of Mtb, here we found that several Fc-engineered antibodies drove Mtb restriction in a neutrophil-dependent manner. Single-cell RNA sequencing analysis showed that a restrictive Fc-engineered antibody promoted neutrophil survival and expression of cell-intrinsic antimicrobial programs. These data show the potential of Fc-engineered antibodies as therapeutics able to harness the protective functions of neutrophils to promote control of TB.
科研通智能强力驱动
Strongly Powered by AbleSci AI