Integrating antigen capturing nanoparticles and type 1 conventional dendritic cell therapy for in situ cancer immunization
Abstract
Abstract Eliciting a robust immune response against tumors is often hampered by the inadequate presence of effective antigen presenting cells and their suboptimal ability to present antigens within the immunosuppressive tumor microenvironment. Here, we report a cascade antigen relay strategy integrating antigen capturing nanoparticles (AC-NPs) and migratory type 1 conventional dendritic cells (cDC1s), named Antigen Capturing nanoparticle Transformed Dendritic Cell therapy (ACT-DC), to facilitate in situ immunization. AC-NPs are engineered to capture antigens directly from the tumor and facilitate their delivery to adoptively transferred migratory cDC1s, enhancing antigen presentation to the lymph nodes and reshaping the tumor microenvironment. Our findings suggest that ACT-DC improves in situ antigen collection, triggers a robust systemic immune response without the need for exogenous antigens, and transforms the tumor environment into a more “immune-hot” state. In multiple tumor models including colon cancer, melanoma, and glioma, ACT-DC in combination with immune checkpoint inhibitors eliminates primary tumors in 50-100% of treated mice and effectively rejects two separate tumor rechallenges. Collectively, ACT-DC could provide a broadly effective approach for in situ cancer immunization and tumor microenvironment modulation.
Article Details
Authors (20)
Chih-Jia Chao
Endong Zhang
Duong N. Trinh
Edidiong Udofa
Hanchen Lin
Caylee Silvers
Jiawei Huo
Shan He
Department of Chemistry, The Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, State Key Laboratory of Nervous System Disorder, Division of Life Science, and Department of Chemical and Biological Engineering
Jingtian Zheng
Xiaoying Cai
Department of Biotherapy, Cancer Center and State Key laboratory of Biotherapy, West China Hospital, Sichuan University
Qing Bao
Luyu Zhang
Philana Phan
Sara M. Elgendy
Xiangqian Shi
Joanna E. Burdette
Steve Seung-Young Lee
Yu Gao
Peng Zhang
Zongmin Zhao