Exploitable mechanisms of antibody and CAR mediated macrophage cytotoxicity
Abstract
Abstract Macrophages infiltrate solid tumors and either support survival or induce cancer cell death through phagocytosis or cytotoxicity. To uncover regulators of macrophage cytotoxicity towards cancer cells, we perform two co-culture CRISPR screens using CAR-macrophages targeting different tumor associated antigens. Both identify ATG9A as an important regulator of this cytotoxic activity. In vitro and in vivo, ATG9A depletion in cancer cells sensitizes them to macrophage-mediated killing. Proteomic and lipidomic analyses reveal that ATG9A deficiency impairs the cancer cell response to macrophage-induced plasma membrane damage through defective lysosomal exocytosis, reduced ceramide production, and disrupted caveolar endocytosis. Depleting non-cytotoxic macrophages using CSF1R inhibition while preventing ATG9A-mediated tumor membrane repair enhances the anti-tumor activity of therapeutic antibodies in mice. Thus, macrophage cytotoxicity plays an important role in tumor elimination during antibody or CAR-macrophage treatment, and inhibiting tumor membrane repair via ATG9A, particularly in combination with cytotoxic macrophage enrichment through CSF1R inhibition, improves tumor-targeting macrophage efficacy.
Article Details
Authors (27)
Tianyi Liu
Meng Zhang
Tatyanah Farsh
Haolong Li
Audrey Kishishita
Abhilash Barpanda
Stanley G. Leung
Jun Zhu
Wuxi EliTe Solar Co., Wuxi, China.
Hyuncheol Jung
Junjie Tony Hua
Xiaolin Zhu
Alexander B. Kim
Young Ah Goo
Minsoo Son
Jaenyeon Kim
Aish Subramanian
Martin Sjöström
Katherine C. Fuh
Jocelyn S. Chapman
Julia Carnevale
Luke A. Gilbert
Aparna Lakkaraju
Peter M. Bruno
David Quigley
Department of Physics, University of Warwick 2 , Gibbet Hill Road, Coventry CV4 7AL,
Arun P. Wiita
Felix Y. Feng
Carl J. DeSelm