A Novel Dual-targeting PD-1 and TL1A Bispecific Antibody with Synergistic Effect for Immune Disorders Treatment 2255198
Abstract
Abstract Introduction Programmed cell death protein 1 (PD-1), an inhibitory immune checkpoint on T cells, maintains immune homeostasis. Dysregulated PD-1 signaling is implicated in autoimmune pathogenesis, whereas insufficient activity may result in uncontrolled T-cell responses. TNF-like ligand 1A (TL1A), a member of the TNF superfamily, engages DR3 to activate NF-κB pathway, thereby amplifying pro-inflammatory cytokine production and contributing to chronic inflammation and fibrosis. We developed a novel bispecific antibody that co-targets PD-1 and TL1A to achieve synergistic inhibition of pathogenic immune activation, with relevance to both PD-1 and TL1A driven immune disorders. Methods Bispecific antibodies were generated by fusing novel PD-1 agonistic and TL1A antagonistic VHH domains in a tetra-valent format. A series of candidates were evaluated through comprehensive in vitro assays including assessment of binding kinetics, PD-1/PD-L1/2 blocking, PD-1 agonism, TL1A-DR3 blocking, ADCC, and T-cell suppression. In vivo efficacy was assessed in a mouse colitis model. Results The leading bispecific antibody binds to a unique PD-1 epitope, enhances PD-1—PD-L1/2 engagement, and inhibits TL1A—DR3 binding. It demonstrated dose-dependent PD-1 pathway agonism and TL1A antagonism, suppressing T-cell activation, proliferation and cytokine production. Robust ADCC activity against PD-1+ T cells was observed. In vivo, it showed superior efficacy over comparator monotherapies in ameliorating colitis. Conclusion The anti-PD-1xTL1A bispecific antibody exerts synergistic immunomodulation through three complementary mechanisms: enhancement of PD-1 inhibitory signaling, blockade of the TL1A—DR3 pathway, and selective depletion of PD-1-expressing T cells via ADCC. It significantly mitigates T-cell-driven inflammation in vitro and ameliorates disease activity in vivo, supporting its potential as a novel treatment for autoimmune diseases such as IBD (inflammatory bowel disease). Funding Source Nanjing Leads Biolabs Co., Ltd Topic Categories Therapeutic Approaches to Autoimmunity (THER)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (11)
Hongyan Shang
Nanjing Leads Biolabs Co., Ltd
Duqing Jiang
Nanjing Leads Biolabs Co., Ltd
Xiao Huang
Department of Chemistry
Jianming Sun
Yurong Qin
1Nanjing Leads Biolabs Co., Ltd., Nanjing, China
Guojin Wu
Chengze Ni
Nanjing Leads Biolabs Co., Ltd
Jing Guan
Jordan Zhu
1Nanjing Leads Biolabs Co., Ltd., Nanjing, China
Xiaoqiang Kang
1Nanjing Leads Biolabs Co., Ltd., Nanjing, China
Hong Ling