作者
Philip E. Brandish,Anthony Palmieri,S. V. Antonenko,Maribel Beaumont,L Benso,Mark T. Cancilla,Mangeng Cheng,Laurence Fayadat‐Dilman,Guo Feng,Isabel Figueroa,Juhi Firdos,R. M. Garbaccio,Laura Garvin-Queen,Dennis Gately,Prasanthi Geda,Christopher J. Haines,SuChun Hseih,Douglas Hodges,Jeffrey C. Kern,Nickolas Knudsen,Kristen Kwasnjuk,Linda Liang,Huiping Ma,Anthony Manibusan,Paul L. Miller,Lily Y. Moy,Yujie Qu,Sanjiv Shah,John Shin,Peter Stivers,Yingxian Sun,Daniela M. Tomazela,Hyun Chong Woo,Dennis M. Zaller,Shuli Zhang,Yiwei Zhang,Mark Zielstorff
摘要
Glucocorticoids (GCs) are excellent anti-inflammatory drugs but are dose-limited by on-target toxicity. We sought to solve this problem by delivering GCs to immune cells with antibody–drug conjugates (ADCs) using antibodies containing site-specific incorporation of a non-natural amino acid, novel linker chemistry for in vitro and in vivo stability, and existing and novel glucocorticoid receptor (GR) agonists as payloads. We directed fluticasone propionate to human antigen-presenting immune cells to afford GR activation that was dependent on the targeted antigen. However, mechanism of action studies pointed to accumulation of free payload in the tissue culture supernatant as the dominant driver of activity and indeed administration of the ADC to human CD74 transgenic mice failed to activate GR target genes in splenic B cells. Suspecting dissipation of released payload, we designed an ADC bearing a novel GR agonist payload with reduced permeability which afforded cell-intrinsic activity in human B cells. Our work shows that antibody-targeting offers significant potential for rescuing existing and new dose-limited drugs outside the field of oncology.